PaperPanorama

HEP Phenomenology·hep-ph

Mon·May 17, 2021

38 papers31 primary·7 cross-listed·reconstructed*

  1. 01*

    Neutron Star Quantum Death by Small Black Holes

    Pierce Giffin🇺🇸 · John Lloyd🇺🇸 · Samuel D. McDermott🇺🇸 · Stefano Profumo🇺🇸

    Neutron stars can be destroyed by black holes at their center accreting material and eventually swallowing the entire star. Here we note that the accretion model adopted in the literature, based on Bondi accretion or variations thereof, is inadequate for small black holes -- black holes whose Schwarzschild radius is comparable to, or smaller than, the neutron's de Broglie wavelength. In this case, quantum mechanical aspects of the accretion process cannot be neglected, and give rise to a completely different accretion rate. We show that for the case of black holes seeded by the collapse of bosonic dark matter, this is the case for electroweak-scale dark matter particles. In the case of fermionic dark matter, typically the black holes that would form at the center of a neutron star are more massive, unless the dark matter particle mass is very large, larger than about 10 GeV. We calculate the lifetime of neutron stars harboring a ``small'' black hole, and find that black holes lighter than kg quickly evaporate, leaving no trace. More massive black holes destroy neutron stars via quantum accretion on time-scales much shorter than the age of observed neutron stars. We find that the range where seed black holes inside neutron stars are massive enough that they do not quickly evaporate away, but not so massive that a fluid accretion picture is warranted is limited to between and kg, but our results are key to accurately determine the actual critical black hole mass corresponding to the onset of neutron star destruction

    hep-phastro-ph.HEastro-ph.SRgr-qcPRD(2022)·28 citations
  2. 02*

    Probing the CP properties of the Higgs sector at ILC

    T. Agatonovic Jovin🇷🇸 · I. Bozovic Jelisavcic🇷🇸 · I. Smiljanic🇷🇸 · G. Kacarevic🇷🇸 · N. Vukasinovic🇷🇸 · G. Milutinovic Dumbelovic🇷🇸 · J. Stevanovic🇷🇸 · M. Radulovic🇷🇸 · D. Jeans🇯🇵

    The violation of CP symmetry is one of Sakharov's conditions for the matter-antimatter asymmetry of the Universe. Currently known sources of CP violation in the quark and neutrino sectors are insufficient to account for this. Is CP also violated in the Higgs sector? Could the SM-like Higgs boson be a mixture of even and odd CP states of an extended Higgs sector? With what precision could such effects be measured at future electron-positron colliders? These questions will be discussed in the light of the latest and ongoing studies at ILC.

    hep-phhep-ex1 citation
  3. 03*

    Type-3/2 Seesaw Mechanism

    Durmus Demir🇹🇷 · Canan Karahan🇹🇷 · Ozan Sargın🇹🇷

    Type-I seesaw provides a natural explanation for the tiny neutrino masses. The right-handed neutrino masses it requires are, however, too large to keep the Higgs boson mass at its measured value. Here we show that vector-spinors, singlet leptons like the right-handed neutrinos, generate the tiny neutrino masses naturally by the exchange of its spin-1/2 and spin-3/2 components. This one-step seesaw mechanism, which we call Type-3/2 seesaw, keeps the Higgs boson mass unchanged at one loop, and gives cause therefore to no fine-tuning problem. If the on-shell vector-spinor is a pure spin-3/2 particle then it becomes a potential candidate for hidden dark matter diluting due only to the expansion of the Universe. The Type-3/2 seesaw provides a natural framework for the neutrino, Higgs boson and dark matter sectors, with overall agreement with current experiments and observations.

    hep-phhep-thPRD(2021)·2 citations
  4. 04*

    Infrared dressing in real time: emergence of anomalous dimensions

    Mudit Rai🇺🇸 · Lisong Chen🇺🇸 · Daniel Boyanovsky🇺🇸

    We implement a dynamical resummation method (DRM) as an extension of the dynamical renormalization group to study the time evolution of infrared dressing in non-gauge theories. Super renormalizable and renormalizable models feature infrared divergences similar to those of a theory at a critical point, motivating a renormalization group improvement of the propagator that yields a power law decay of the survival probability . The (DRM) confirms this decay, yields the dressed state and determines that the anomalous dimension is completely determined by the slope of the spectral density at threshold independent of the ultraviolet behavior, suggesting certain universality for infrared phenomena. The dressed state is an entangled state of the charged and massless quanta. The entanglement entropy is obtained by tracing over the unobserved massless quanta. Its time evolution is determined by the (DRM), it is infrared finite and describes the information flow from the initial single particle to the asymptotic multiparticle dressed state. We show that effective field theories of massless axion-like particles coupled to fermion fields do not feature infrared divergences, and provide a criterion for infrared divergences in effective field theories valid for non-gauge theories up to one loop.

    hep-phhep-thquant-phPRD(2021)·13 citations
  5. 05*

    Z-Boson Decays into Majorana or Dirac (Heavy) Neutrinos

    Alain Blondel🇫🇷 · André de Gouvêa🇺🇸 · Boris Kayser🇺🇸

    We computed the kinematics of Z-boson decay into a heavy-light neutrino pair when the Z-boson is produced at rest in electron-positron collisions, including the subsequent decay of the heavy neutrino into a visible final state containing a charged-lepton. We concentrated on heavy-neutrino masses of order dozens of GeV and the issue of addressing the nature of the neutrinos - Dirac fermions or Majorana fermions. We find that while it is not possible to tell the nature of the heavy and light neutrinos on an event-by-event basis, the nature of the neutrinos can nonetheless be inferred given a large-enough sample of heavy-light neutrino pairs. We identify two observables sensitive to the nature of neutrinos. One is the forward-backward asymmetry of the daughter-charged-leptons. This asymmetry is exactly zero if the neutrinos are Majorana fermions and is non-zero (and opposite) for positively- and negatively-charged daughter-leptons if the neutrinos are Dirac fermions. The other observable is the polarization of the heavy neutrino, imprinted in the laboratory-frame energy distribution of the daughter-charged-leptons. Dirac neutrinos and antineutrinos produced in electron-positron collisions at the Z-pole are strongly polarized while Majorana neutrinos are at most as polarized as the -bosons.

    hep-phhep-exPRD(2021)·27 citations
  6. 06*

    Gravitational Leptogenesis in Bounce Cosmology

    Neil D. Barrie🇰🇷

    We investigate whether successful Gravitational Leptogenesis can take place during an Ekpyrotic contraction phase. Two possible paths by which this can occur are coupling the Ekpyrotic scalar to a gravitational Chern-Simons term, or to a gauge field Chern-Simons term. These couplings lead to the production of chiral gravitational waves, which generate a lepton number asymmetry through the gravitational-lepton number anomaly. This lepton asymmetry is subsequently reprocessed by equilibrium sphaleron processes to produce a baryon asymmetry. We find successful Gravitational Leptogenesis to be possible in Ekpyrotic bounce cosmologies through both of these mechanisms.

    hep-phgr-qcJCAP(2021)·3 citations
  7. 07*

    Threshold anomalies of ultra-high energy cosmic photons due to Lorentz invariance violation

    Hao Li🇨🇳 · Bo-Qiang Ma🇨🇳

    From special relativity, photon annihilation process \HepProcess{{\Pgg}{\Pgg}{\to}{\Pep}{\Pem}} prevents cosmic photons with energies above a threshold to propagate a long distance in cosmic space due to their annihilation with low energy cosmic background photons. However, modifications of the photon dispersion relation from Lorentz invariance violation~(LIV) can cause novel phenomena beyond special relativity to happen. In this paper, we point out that these phenomena include optical transparency, threshold reduction and reappearance of ultra-high energy photons in cosmic space. The recent observation of near and above PeV photon events by the LHAASO Collaboration reveals the necessity to consider the threshold anomalies. Future observations of above threshold photons from extragalactic sources can testify LIV properties of photons.

    hep-phastro-ph.HEgr-qcJHEAp(2021)·23 citations
  8. 08*

    New method of probing an oscillating EDM induced by axionlike dark matter using an RF Wien Filter in storage rings

    On Kim🇰🇷 · Yannis K. Semertzidis🇰🇷

    A hypothetical pseudo-scalar particle axion, which is an immediate result of the Peccei-Quinn solution to the strong CP problem, may couple to gluons and lead to an oscillating electric dipole moment (EDM) of fundamental particles. This paper proposes a novel method of probing the axion-induced oscillating EDM in storage rings, using a radiofrequency (RF) Wien Filter. The Wien Filter at the frequency of the sidebands of the axion and frequency, , generates a spin resonance in the presence of an oscillating EDM, as confirmed both by an analytical estimation of the spin equations and independently by simulation. A brief systematic study also shows that this method is unlikely to be limited by Wien Filter misalignment issues.

    hep-phhep-exPRD(2021)·23 citations
  9. 09*

    N-jettiness in electroweak high-energy processes

    Junegone Chay🇰🇷 · Taewook Ha🇰🇷 · Taehyun Kwon🇰🇷

    We study -jettiness in electroweak processes at extreme high energies. The description of the scattering process such as is similar to QCD. At present, electroweak processes are prevailed by the processes induced by the strong interaction, but they will be relevant at future colliders at high energy. The main difference between QCD and electroweak processes is that the initial- and final-state particles should appear in the form of hadrons, that is, color singlets in QCD, while there can be weak nonsinglets as well in electroweak interactions. We analyze the factorization theorems for the -jettiness in , and compute the factorized parts to next-to-leading logarithmic accuracy. To simplify the comparison with QCD, we only consider the gauge interaction, and the extension to the Standard Model is straightforward. Put it in a different way, it corresponds to an imaginary world in which colored particles can be observed in QCD, and the richer structure of effective theories is probed. Various nonzero nonsinglet matrix elements are interwoven to produce the factorized results, in contrast to QCD in which there are only contributions from the singlets. Another distinct feature is that the rapidity divergence is prevalent in the contributions from weak nonsinglets due to the different group theory factors between the real and virtual corrections. We verify that the rapidity divergence cancels in all the contributions with a different number of nonsinglet channels. We also consider the renormalization group evolution of each factorized part to resum large logarithms, which are distinct from QCD.

    hep-phJHEP(2022)·2 citations
  10. 10*

    Indirect CP probes of the Higgs--top-quark interaction at the LHC

    Henning Bahl🇩🇪

    The precise determination of the Higgs boson CP properties is among the most important goals for existing and future colliders. In this work, we evaluate existing constraints on the CP nature of the Higgs interaction with top quarks taking into account all relevant inclusive and differential Higgs boson measurements. We study the model dependence of these constraints by allowing for deviations from the SM predictions also in the Higgs couplings to massive vector boson, photons, and gluons. Additionally, we evaluate the future prospects for constraining the CP nature of the top-Yukawa coupling by total rate measurements. In this context, we propose an analysis strategy for measuring tH production at the HL-LHC without relying on assumptions about the Higgs CP character.

    hep-ph0 citations
  11. 11*

    On factorisation schemes for the electron parton distribution functions in QED

    Stefano Frixione🇮🇹

    The electron, positron, and photon Parton Distribution Functions (PDFs) of the unpolarised electron have recently been computed at the next-to-leading logarithmic accuracy in QED, by adopting the factorisation scheme. We present here analogous results, obtained by working in a different framework that is inspired by the so-called DIS scheme. We derive analytical solutions relevant to the large- region, where we show that the behaviour of the PDFs depends in a dramatic way on whether running- effects are included to all orders, as opposed to being truncated to some fixed order. By means of suitable initial and evolution conditions, next-to-leading logarithmic accurate PDFs are obtained whose large- functional forms are identical to those of their leading logarithmic counterparts.

    hep-phJHEP(2021)·37 citations
  12. 12*

    Explaining the Cabibbo Angle Anomaly and Lepton Flavour Universality Violation in Tau Decays With a Singly-Charged Scalar Singlet

    Fiona Kirk🇨🇭

    The singly charged singlet scalar, with its necessarily flavour violating couplings to leptons, lends itself particularly well for an explanation of the Cabibbo Angle Anomaly and of hints for lepton flavour universality violation in . In a setup addressing both anomalies, we predict loop-induced effects in and in . A recast of ATLAS selectron and smuon searches allows us to derive a coupling-independent lower limit of GeV on the mass of the singly charged singlet scalar. At a future collider, dark matter mono-photon searches could provide a complementary set of bounds.

    hep-phhep-ex2 citations
  13. 13*

    Axial-vector form factors of the baryon octet and chiral symmetry

    Ulrich Sauerwein🇩🇪 · Matthias F.M. Lutz🇩🇪 · Rob G.E. Timmermans🇳🇱

    We consider the axial-vector form factors of the baryon octet in flavor-SU(3) chiral perturbation theory. The baryon octet and decuplet and the pseudoscalar-meson octet are included as explicit degrees of freedom. We explore the use of on-shell meson and baryon masses in the one-loop contributions to the axial-vector form factors and focus on a consistent treatment in terms of chiral power counting. The convergence properties of such an approach are scrutinized. We discuss the potential for comparison to upcoming QCD lattice data.

    hep-phhep-latPRD(2022)·15 citations
  14. 14*

    Discriminating 1D new physics solutions in decays

    Shuang-Yi Li🇨🇳 · Rui-Xiang Shi🇨🇳 · Li-Sheng Geng🇨🇳

    The recent measurements of , , , , a set of CP-averaged angular observables for the decay, and its isospin partner by the LHCb Collaboration, consistently hint at lepton universality violation in the transitions. In this work, we first perform global fits to the data and show that five one-dimensional scenarios, i.e, , , , , and can best explain the so-called B anamolies. Furthermore, we explore how these scenarios can be distinguished from each other. For this purpose, we first study the combinations of four angular asymmetries ~ and find that they cannot distinguish the five new physics scenarios. We then show that a newly constructed ratio can uniquely discriminate the five new physics scenarios in proper intervals of if it can be measured with a percent level precision.

    hep-phhep-exCPC(2022)·7 citations
  15. 15*

    Dark matter interacting via a massive spin-2 mediator in warped extra-dimensions

    Arturo de Giorgi🇩🇪 · Stefan Vogl🇩🇪

    We study dark matter interacting via a massive spin-2 mediator. To have a consistent effective theory for the spin-2 particle, we work in a warped extra-dimensional model such that the mediator(s) are the Kaluza-Klein (KK) modes of the 5D graviton. We pay close attention to dark matter annihilations into KK-gravitons. Due to the high energy behavior of longitudinal modes of spin-2 fields, these channels exhibit a tremendous growth at large center of mass energies if only one spin-2 mediator is considered. For the first time, we include the full KK-tower in this dark matter production process and find that this growth is unphysical and cancels once the full field content of the extra-dimensional theory is taken into account. Interestingly, this implies that it is not possible to approximate the results obtained in the full theory with a reduced set of effective interactions once is greater than the first graviton mass. This casts some doubt on the universal applicability of previous studies with spin-2 mediators within an EFT framework and prompts us to revisit the phenomenological allowed parameter space of gravitationally interacting scalar dark matter in warped extra-dimensions.

    hep-phJHEP(2021)·34 citations
  16. 16*

    Axion-CMB Scenario in Supercooled Universe

    Satoshi Iso🇯🇵 · Kiyoharu Kawana🇯🇵 · Kengo Shimada🇯🇵

    Axion-CMB scenario is an interesting possibility to explain the temperature anisotropy of the cosmic microwave background (CMB) by primordial fluctuations of the QCD axion \cite{Iso:2020pzv}. In this scenario, fluctuations of radiations are generated by an energy exchange between axions and radiations, which results in the correlation between the primordial axion fluctuations and the CMB anisotropies. Consequently, the cosmological observations stringently constrain a model of the axion and the early history of the universe. In particular, we need a large energy fraction of the axion at the QCD phase transition, but it must become tiny at the present universe to suppress the isocurvature power spectrum. One of natural cosmological scenarios to realize such a situation is the thermal inflation which can sufficiently dilute the axion abundance. Thermal inflation occurs in various models. In this paper, we focus on a classically conformal (CC) - model with a QCD axion. In this model, the early universe undergoes a long supercooling era of the - and electroweak symmetries, and thermal inflation naturally occurs. Thus it can be a good candidate for the axion-CMB scenario. But the axion abundance at the QCD transition is shown to be insufficient in the original CC - model. To overcome the situation, we extend the model by introducing scalar fields (either massive or massless) and consider a novel cosmological history such that the and the - sectors evolve almost separately in the early universe. We find that all the necessary conditions for the axion-CMB scenario can be satisfied in some parameter regions for massless fields, typically and the mass of - gauge boson around TeV.

    hep-phastro-ph.COhep-thPRD(2021)·5 citations
  17. 17*

    Capt'n General: A generalized stellar dark matter capture and heat transport code

    Neal Avis Kozar🇨🇦 · Ashlee Caddell🇦🇺 · Luke Fraser-Leach🇨🇦 · Pat Scott🇦🇺 · Aaron C. Vincent🇨🇦

    Capt'n General is a FORTRAN90 standalone package that can be used to compute the capture and heat transport of dark matter in stars. It can compute capture rates for constant, velocity and momentum-dependent DM-nucleon elastic scattering cross sections, as well as non-relativistic effective operator interactions. Capt'n General can be interfaced with the GAMBIT global fitting codebase as well as stellar evolution simulation codes such as MESA.

    hep-ph12 citations
  18. 18*

    An Experiment Exploring Gravitational Effects on CP Violation

    G. M. Piacentino🇮🇹 · A. Palladino🇺🇸 · R. N. Pilato🇮🇹 · G. Venanzoni🇮🇹 · L. Conti🇮🇹 · G. Di Sciacio🇮🇹 · R. Di Stefano🇮🇹 · N. Fratianni🇮🇹 · A. Gioiosa🇮🇹 · D. Hajdukovic🇨🇸 · F. Ignatov🇷🇺 · F. Marignetti🇮🇹 · V. Testa🇮🇹

    We suggest a new experiment sensitive to a possible difference between the amount of CP violation as measured on the surface of the Earth and in a lower gravity environment. Our proposed experiment is model independent and could yield a measurement within tens of days, indicating a dependence of the level of CP violation in the neutral kaon system on the local gravitational potential.

    hep-phastro-ph.HEastro-ph.IMgr-qc+12 citations
  19. 19*

    The Neutrino Magnetic Moment Portal

    Vedran Brdar🇺🇸 · Admir Greljo🇨🇭 · Joachim Kopp🇨🇭 · Toby Opferkuch🇨🇭

    We discuss neutrino magnetic moments as a way of constraining physics beyond the Standard Model. In fact, new physics at the TeV scale can easily generate observable neutrino magnetic moments, and there exists a multitude of ways of probing them. We highlight in particular direct dark matter detection experiments (which are sensitive to neutrino magnetic moments because of the predicted modifications to the solar neutrino scattering rate), stellar cooling, and cosmological constraints.

    hep-ph2 citations
  20. 20*

    Prospects for direct CP tests of interactions

    Rodrigo Alonso🇬🇧 · Cristofero Fraser-Taliente🇬🇧 · Chris Hays🇬🇧 · Michael Spannowsky🇬🇧

    We study the prospects for probing the CP structure of interactions using the decays of the lightest baryon formed in the quark's hadronization. The low yields of reconstructible events make it unlikely for tests to be performed with the next generation of colliders. In decays a CP-sensitive distribution could be measured with a high-luminosity collider, while in both and decays such a distribution could be measured with a very high luminosity collider. However, we find that only the collider can produce enough decays to probe a physical CP asymmetry in the vertex.

    hep-phJHEP(2021)·3 citations
  21. 21*

    Coherent photoproduction of low- charmonium in peripheral heavy ion collisions within the color dipole model

    Gongming Yu🇨🇳 · Yanbing Cai🇨🇳 · Yongping Fu🇨🇳 · Haitao Yang🇨🇳 · Quangui Gao🇨🇳 · Qiang Hu🇨🇳 · Liyuan Hu🇨🇳 · Wei Li🇺🇸 · Yushou Song🇨🇳

    We calculate the centrality dependence for coherent photoproduction of very low- at Relativistic Heavy Ion Collider (RHIC) and Large Hadron Collider (LHC) energies within the impact parameter dependent saturated color dipole model. By using the large equivalent photon fluxes, we present the differential cross section of very low- produced by coherent photonuclear in peripheral heavy-ion collisions. The numerical results demonstrate that our calculation are agree with data in peripheral heavy ion collisions at Relativistic Heavy Ion Collider (RHIC) energies.

    hep-phAdv.High Energy Phys.(2022)·6 citations
  22. 22*

    One colorful resolution to the neutrino mass generation, three lepton flavor universality anomalies, and the Cabibbo angle anomaly

    We-Fu Chang🇹🇼

    We propose a simple model to simultaneously explain four observed flavor anomalies while generating the neutrino mass at the one-loop level. Specifically, we address the measured anomalous magnetic dipole moments of the muon, , and electron, , the observed anomaly of in the -meson decays, and the Cabibbo-angle anomaly. The model consists of four colorful new degrees of freedom: three scalar leptoquarks with the Standard Model quantum numbers , and , and one pair of down-quark-like vector fermion in . The baryon number is assumed to be conserved for simplicity. Phenomenologically viable solutions with the minimal number of real parameters can be found to accommodate all the above-mentioned anomalies and produce the approximate, close to , neutrino oscillation pattern at the same time. From general consideration, the model robustly predicts: (1) neutrino mass is of the normal hierarchy type, and (2) . The possible UV origin to explain the flavor pattern of the found viable parameter space is briefly discussed. The parameter space can be well reproduced within a simple split fermion toy model.

    hep-phJHEP(2021)·18 citations
  23. 23*

    Anomalous bosons for anomalous decays

    Joe Davighi🇬🇧

    Motivated by the intriguing discrepancies in transitions, the fermion mass problem, and a desire to preserve the accidental symmetries of the Standard Model (SM), we extend the SM by an anomalous gauge symmetry where . The heavy boson associated with spontaneously breaking at the TeV scale mediates the anomalies via . We show that this model, which features mixed gauge anomalies involving and hypercharge, can be made anomaly-free for any by integrating in a pair of charged fermions whose masses naturally reside somewhere between 1 and 30 TeV. The gauge symmetry permits only the third family Yukawas at the renormalisable level, and so the light quark masses and mixings are controlled by accidental flavour symmetries which we assume are minimally broken alongside . The lepton sector is not governed by symmetries, but rather one expects a nearly diagonal charged lepton Yukawa with . The model does not explain the hierarchy , but it does possess high quality lepton flavour symmetries that are robust to the heavy physics responsible for generating . We establish the viability of these models by checking agreement with the most important experimental constraints. We comment on how the model could also explain neutrino masses and the muon .

    hep-phhep-thJHEP(2021)·55 citations
  24. 24*

    Massless Preheating and Electroweak Vacuum Metastability

    Jeff Kost🇬🇧 · Chang Sub Shin🇰🇷 · Takahiro Terada🇰🇷

    Current measurements of Standard Model parameters suggest that the electroweak vacuum is metastable. This metastability has important cosmological implications, because large fluctuations in the Higgs field could trigger vacuum decay in the early universe. For the false vacuum to survive, interactions which stabilize the Higgs during inflation -- e.g., inflaton-Higgs interactions or non-minimal couplings to gravity -- are typically necessary. However, the post-inflationary preheating dynamics of these same interactions could also trigger vacuum decay, thereby recreating the problem we sought to avoid. This dynamics is often assumed catastrophic for models exhibiting scale invariance since these generically allow for unimpeded growth of fluctuations. In this paper, we examine the dynamics of such "massless preheating" scenarios and show that the competing threats to metastability can nonetheless be balanced to ensure viability. We find that fully accounting for both the backreaction from particle production and the effects of perturbative decays reveals a large number of disjoint "islands of (meta)stability" over the parameter space of couplings. Ultimately, the interplay among Higgs-stabilizing interactions plays a significant role, leading to a sequence of dynamical phases that effectively extend the metastable regions to large Higgs-curvature couplings.

    hep-phastro-ph.COgr-qchep-thPRD(2022)·16 citations
  25. 25*

    NNLO QCD corrections to diphoton production with an additional jet at the LHC

    Herschel A. Chawdhry🇬🇧 · Michal Czakon🇩🇪 · Alexander Mitov🇬🇧 · Rene Poncelet🇬🇧

    We calculate the NNLO QCD corrections to diphoton production with an additional jet at the LHC. Our calculation represents the first NNLO-accurate prediction for the transverse momentum distribution of the diphoton system. The improvement in the accuracy of the theoretical prediction is significant, by a factor of up to four relative to NLO QCD. Our calculation is exact except for the finite remainder of the two-loop amplitude which is included at leading color. The numerical impact of this approximated contribution is small. The results of this work are expected to further our understanding of the Higgs boson sector and of the behavior of higher-order corrections to LHC processes.

    hep-phhep-exJHEP(2021)·118 citations
  26. 26*

    Radiative corrections of order to Sirlin's radiative corrections of order , induced by the hadronic structure of the neutron

    A. N. Ivanov🇦🇹 · R. Höllwieser🇩🇪 · N. I. Troitskaya🇦🇹 · M. Wellenzohn🇦🇹 · Ya. A. Berdnikov🇷🇺

    We investigate the contributions of the hadronic structure of the neutron to radiative corrections (or the inner RC) to the neutron beta decay, where , and are the fine-structure constant, the electron energy and the nucleon mass, respectively. We perform the calculation within the effective quantum field theory of strong low-energy pion-nucleon interactions described by the linear -model with chiral symmetry and electroweak hadron-hadron, hadron-lepton and lepton-lepton interactions for the electron-lepton family with symmetry of the Standard Electroweak Theory (Ivanov et al., Phys. Rev. D99, 093006 (2019)). We show that after renormalization, carried out in accordance with Sirlin's prescription (Sirlin, Phys. Rev. 164, 1767 (1967)), the inner RC are of the order of a few parts of . This agrees well with the results obtained in (Ivanov et al., Phys. Rev. D99, 093006 (2019)).

    hep-phnucl-exnucl-thPRD(2021)·5 citations
  27. 27*

    Studying the anomalies and in -parity violating MSSM framework with the inverse seesaw mechanism

    Min-Di Zheng🇨🇳 · Hong-Hao Zhang🇨🇳

    Inspired by the recent experimental results which show deviations from the standard model (SM) predictions of transitions, we study the -parity violating minimal supersymmetric standard model (RPV-MSSM) extended by the inverse seesaw mechanism. The trilinear -parity violating terms, together with the chiral mixing of sneutrinos, induce the loop contributions to the anomaly. We study the parameter space of the single-parameter scenario and the double-parameter scenario , respectively, constrained by other experimental data such as mixing, decay, the lepton flavour violating decays, etc. Both the single-parameter and the double-parameter scenario can resolve the long existing muon anomalous magnetic moment problem as well, and allow the anomalous process to reach the sensitivity at the Future Circular hadron-hadron Collider (FCC-hh).

    hep-phPRD(2021)·41 citations
  28. 28*

    Sizable triple Higgs couplings in the 2HDM: Prospects for future colliders

    F. Arco🇪🇸 · S. Heinemeyer🇪🇸 · M.J. Herrero🇪🇸

    In the framework of the conserving Two Higgs Doublet Model (2HDM), type I and II, we study the triple Higgs couplings with at least one light Higgs boson that is identified by the 125 GeV Higgs boson. We define benchmark planes that exhibit large values of triple Higgs couplings, while being in agreement with all experimental and theoretical constraints. Finally, we analyze the impact of the triple Higgs couplings on the production cross section of two neutral Higgs bosons in two channels, and with . We show that the triple Higgs couplings have an important impact on these production cross sections.

    hep-ph3 citations
  29. 29*

    Pathfinder for a High Statistics Search for Missing Energy In Gamma Cascades

    James B. Dent🇺🇸 · Bhaskar Dutta🇺🇸 · Andrew Jastram🇺🇸 · Doojin Kim🇺🇸 · Andrew Kubik🇨🇦 · Rupak Mahapatra🇺🇸 · Surjeet Rajendran🇺🇸 · Harikrishnan Ramani🇺🇸 · Adrian Thompson🇺🇸 · Shubham Verma🇺🇸

    We investigate the feasibility of a high statistics experiment to search for invisible decay modes in nuclear gamma cascades using 200 kg of %36 Cs(Tl) scintillators that are presently available at Texas A\&M. The experiment aims to search for missing energy by robustly establishing the absence of a photon in a well identified gamma cascade. We report on the experimental demonstration of the energy resolution necessary for this search. Prior explorations of this detector concept focused on baryonically coupled physics that could be emitted in transitions. We point out that this protocol can also search for particles that are coupled to photons by searching for the conversion of a photon produced in a gamma cascade into a hidden particle. Examples of these processes include the oscillation of a photon into a hidden photon and the conversion of a photon into an axion-like-particle either in the presence of a magnetic field or via the Primakoff process. This proof-of-concept apparatus appears to have the ability to search for hitherto unconstrained baryonically coupled scalars and pseudoscalars produced in and transitions. If successfully implemented, this experiment serves as a pathfinder for a larger detector with greater containment that can thoroughly probe the existence of new particles with mass below 4 MeV that lie in the poorly constrained supernova ``trapping window'' that exists between 100 keV and 30 MeV.

    hep-phastro-ph.COhep-exPRD(2022)·11 citations
  30. 30*

    Discrepancy between cosmological and electroweak observables in Higgs Inflation

    J. G. Rodrigues🇧🇷 · Micol Benetti🇮🇹 · Jailson S. Alcaniz🇧🇷

    In this work, we revisit the non-minimally coupled Higgs Inflation scenario and investigate its observational viability in light of the current Cosmic Microwave Background, Baryon Acoustic Oscillation and type Ia Supernovae data. We explore the effects of the Coleman-Weinberg approximation to the Higgs potential in the primordial universe, connecting the predictions for the Lagrangian parameters at inflationary scales to the electroweak observables through Renormalization Group methods at two-loop order. As the main result, we find that observations on the electroweak scale are in disagreement with the constraints obtained from the cosmological data sets used in the analysis. Specifically, an -discrepancy between the inflationary parameters and the electroweak value of the top quark mass is found, which suggests that a significant deviation from the scenario analysed is required by the cosmological data.

    hep-phastro-ph.COgr-qcJHEP(2021)·12 citations
  31. 32*

    Polarimetric signatures of the photon ring of a black hole that is pierced by a cosmic axion string

    Alexander Gußmann🇺🇸

    A black hole image contains a bright ring of photons that have closely circled the black hole on their way from the source to the detector. Here, we study the photon ring of a rotating black hole which is pierced by a global hyper-light axion-type cosmic string. We show that the coupling between the axion and the photon can give rise to a unique polarimetric structure of the photon ring. The structure emerges due to an Aharonov-Bohm type effect that leads to a change of the polarization directions of linear polarized photons when they circle the black hole. For several parameter choices, we determine concrete polarization patterns in the ring. Measuring these patterns can provide us with a way of determining the value of the coefficient of the mixed anomaly between electromagnetism and the symmetry that gave rise to the cosmic string. Finally, we briefly review a possible formation mechanism of black holes that are pierced by cosmic strings and discuss under which conditions we can expect such objects to be present as supermassive black holes in the center of galaxies.

    astro-ph.HEgr-qchep-phhep-thJHEP(2021)·24 citations
  32. 33*

    Study of the coupling at the ILC

    Y. Aoki🇯🇵 · K. Fujii🇯🇵 · J. Tian🇯🇵

    We studied the process at the International Linear Collider (ILC) at GeV, based on the full detector simulation of the International Large Detector (ILD). This process is loop-induced in the Standard Model (SM) and is sensitive to new physics which alters or coupling. We performed the analysis by employing the leading signal channels with and and including full SM background processes. The results are obtained for two scenarios of beam polarisations each with an integrated luminosity of 900 fb. We found the expected significance of the SM signal is 0.40 for (the left-handed polarisation), and 0.06 for (the right-handed polarisation). The bounds on new physics effects are reported as the 95% C.L. upper limit for the cross-section of : 1.8 fb and 0.5 fb respectively for left- and right-handed polarisations. The constraints on effective couplings are to be further studied.

    hep-exhep-ph2 citations
  33. 34*

    The double copy: from optics to quantum gravity

    Chris D. White🇬🇧

    Recently, an intriguing relationship (the "double copy") has been discovered between theories like electromagnetism, and gravity. This potentially gives us a new way to think about gravity, and there are also practical applications involving the efficient calculation of gravitational observables, and also how to simulate gravity using optical systems. In this tutorial, we will review what is known about the double copy, and argue that now is the perfect time for researchers in optics and / or condensed matter to become interested in this fascinating correspondence.

    physics.opticsgr-qchep-phhep-thJ.Opt.Soc.Am.B(2021)·15 citations
  34. 35*

    Exploring Evaporating Primordial Black Holes with Gravitational Waves

    Guillem Domènech🇮🇹 · Volodymyr Takhistov🇯🇵 · Misao Sasaki🇯🇵

    Primordial black holes (PBHs) from the early Universe have been connected with the nature of dark matter and can significantly affect cosmological history. We show that coincidence dark radiation and density fluctuation gravitational wave signatures associated with evaporation of g PBHs can be used to explore and obtain important hints about the formation mechanisms of spinning and non-spinning PBHs spanning orders of magnitude in mass-range, which is challenging to do otherwise.

    astro-ph.COgr-qchep-phPLB(2021)·130 citations
  35. 36*

    Charged pion electric polarizability from lattice QCD

    Hossein Niyazi🇺🇸 · Andrei Alexandru🇺🇸 · Frank X. Lee🇺🇸 · Michael Lujan🇺🇸

    We present a calculation of the charged pion electric polarizability using the background field method. To extract the mass-shift induced by the electric field for the accelerated charged particle we fit the lattice QCD correlators using correlators derived from an effective model. The methodology outlined in this study (boundary conditions, fitting procedure, etc.) is designed to ensure that the results are invariant under gauge transformations of the background field. We apply the method to four dynamical ensembles to extract at pion mass of MeV.

    hep-lathep-exhep-phnucl-thPRD(2021)·13 citations
  36. 37*

    Test of lepton flavour universality in decays

    R.D. Moise (for the LHCb Collaboration)🇬🇧

    The Standard Model of particle physics predicts that charged leptons have the same electroweak interaction strength. This symmetry, called lepton flavour universality, was found to hold in a wide range of particle decays. One observable that is sensitive to lepton flavour universality is the ratio of branching fractions . This quantity is measured using fb of proton-proton collision data recorded by the LHCb experiment at CERN's Large Hadron Collider. For the dilepton invariant mass squared range , the result is , where the first uncertainty is statistical and the second systematic. The measured value is in tension with the Standard Model prediction at the level of , thus providing evidence for the violation of lepton flavour universality in decays.

    hep-exhep-ph3 citations
  37. 38*

    Current-Conserving Relativistic Linear Response for Collisional Plasmas

    Martin Formanek🇺🇸 · Christopher Grayson🇺🇸 · Johann Rafelski🇺🇸 · Berndt Müller🇺🇸

    We investigate the response of a relativistic plasma to electromagnetic fields in the framework of the Boltzmann equation incorporating a collision term in the relaxation rate approximation selected in a form assuring current conservation. We obtain an explicit solution for the linearized perturbation of the Fermi-Dirac equilibrium distribution in terms of the average relaxation rate . We study the resulting covariant, gauge invariant, and current conserving form of the polarization tensor in the ultrarelativistic and non-relativistic limits. We evaluate the susceptibility in the ultrarelativistic limit and explore their dependence on . Finally, we study the dispersion relations for the longitudinal and transverse poles of the propagator. We show that for , where is the plasma frequency, the plasma wave modes are overdamped. In the opposite case, , the propagating plasma modes are weakly damped.

    physics.plasm-phastro-ph.COastro-ph.SRhep-ph+1Annals Phys.(2021)·15 citations

* Reconstructed cohort: no mailing for this day survives in the archive. Papers are grouped by their submission times and arXiv's announcement cut-off, assuming announcement without delay; positions follow identifier order. Validated at ~91% exact-day agreement against the archived era.