PaperPanorama

Nuclear Theory·nucl-th

Monday·September 11, 2017

6 papers3 primary·3 cross-listed

  1. 04

    Two coexisting families of compact stars: observational implications for millisecond pulsars

    Sudip Bhattacharyya (1)🇮🇳 · Ignazio Bombaci (2, 3)🇮🇹 · Domenico Logoteta (3)🇮🇹 · Arun V. Thampan (4, 5) ((1) TIFR, India, (2) Universita di Pisa, (3) INFN, Italy, (4) St. Joseph's College, (5) IUCAA, India)🇮🇳

    It is usually thought that a single equation of state (EoS) model "correctly" represents cores of all compact stars. Here we emphasize that two families of compact stars, viz., neutron stars and strange stars, can coexist in nature, and that neutron stars can get converted to strange stars through the nucleation process of quark matter in the stellar center. From our fully general relativistic numerical computations of the structures of fast-spinning compact stars, known as millisecond pulsars, we find that such a stellar conversion causes a simultaneous spin-up and decrease in gravitational mass of these stars. This is a new type of millisecond pulsar evolution through a new mechanism, which gives rise to relatively lower mass compact stars with higher spin rates. This could have implication for the observed mass and spin distributions of millisecond pulsars. Such a stellar conversion can also rescue some massive, spin-supported millisecond pulsars from collapsing into black holes. Besides, we extend the concept of critical mass for the neutron star sequence (Berezhiani et al. 2003; Bombaci et al. 2004) to the case of fast-spinning neutron stars, and point out that neutron star EoS models cannot be ruled out by the stellar mass measurement alone. Finally, we emphasize the additional complexity for constraining EoS models, for example, by stellar radius measurements using X-ray observations, if two families of compact stars coexist.

    astro-ph.HEastro-ph.SRgr-qcnucl-thApJ(2017)·18 citations
  2. 05

    Observation of He+ cluster states in Li

    W. H. Ma · J. S. Wang · D. Patel · Y. Y. Yang · J. B. Ma · S. L. Jin · P. Ma · Q. Hu · Z. Bai · M. R. Huang · X. Q. Liu · Y. J. Zhou and 16 other authors

    He+ cluster states of exited Li have been measured by 32.7 MeV/nucleon Li beams bombarding on Pb target. Two resonant states are clearly observed with the excitation energies at 9.8 MeV and 12.6 MeV and spin-parity of 3/2 and 7/2 respectively. These two states are considered to be members of K=1/2 band. The spin-parity of them are identified by the method of angular correlation analysis and verified by the continuum discretized coupled channels (CDCC) calculation, which agrees with the prediction of the generator coordinate method (GCM). A monopole matrix element about 4 fm for the 3/2 state is extracted from the distorted wave Born approximation (DWBA) calculation. These results strongly support the feature of clustering structure of two neutron-rich clusters in the neutron-rich nucleus Li for the first time.

    nucl-exnucl-thPRC(2021)·14 citations
  3. 06

    Anisotropy in the equation of state of strongly magnetized quark matter within the Nambu--Jona-Lasinio Model

    Sidney S. Avancini🇧🇷 · Veronica Dexheimer🇺🇸 · Ricardo L. S. Farias🇧🇷 · Varese S. Timóteo🇧🇷

    In this article, we calculate the magnetization and other thermodynamical quantities for strongly magnetized quark matter within the Nambu-Jona-Lasinio model at zero temperature. We assume two scenarios, chemically equilibrated charge neutral matter present in the interior of compact stars and zero-strangeness isospin-symmetric matter created in nuclear experiments. We show that the magnetization oscillates with density but in a much more smooth form than what was previously shown in the literature. As a consequence, we do not see the unphysical behavior in the pressure in the direction perpendicular to the magnetic field that was previously found. Finally, we also analyze the effects of a vector interaction on our results.

    hep-phastro-ph.HEnucl-thPRC(2018)·31 citations

Affiliations

first authorsco-authorsvia INSPIRE