PaperPanorama

Nuclear Theory·nucl-th

Wednesday·May 16, 2018

7 papers4 primary·3 cross-listed

  1. 05

    Effects of thermonuclear X-ray bursts on non-burst emissions in the soft state of 4U 1728--34

    Sudip Bhattacharyya (TIFR, India) · J. S. Yadav (TIFR, India) · Navin Sridhar (IISER-Bhopal, India) · Jai Verdhan Chauhan (TIFR, India) · P. C. Agrawal (CEBS, India) · H. M. Antia (TIFR, India) · Mayukh Pahari (University of Southampton, UK) · Ranjeev Misra (IUCAA, India) · Tilak Katoch (TIFR, India) · R. K. Manchanda (University of Mumbai, India) · Biswajit Paul (RRI, India)

    It has recently been shown that the persistent emission of a neutron star low-mass X-ray binary (LMXB) evolves during a thermonuclear (type-I) X-ray burst. The reason of this evolution, however, is not securely known. This uncertainty can introduce significant systematics in the neutron star radius measurement using burst spectra, particularly if an unknown but significant fraction of the burst emission, which is reprocessed, contributes to the changes in the persistent emission during the burst. Here, by analyzing individual burst data of AstroSat/LAXPC from the neutron star LMXB 4U 1728--34 in the soft state, we show that the burst emission is not significantly reprocessed by a corona covering the neutron star. Rather, our analysis suggests that the burst emission enhances the accretion disk emission, possibly by increasing the accretion rate via disk. This enhanced disk emission, which is Comptonized by a corona covering the disk, can explain an increased persistent emission observed during the burst. This finding provides an understanding of persistent emission components, and their interaction with the thermonuclear burst emission. Furthermore, since burst photons are not significantly reprocessed, non-burst and burst emissions can be reliably separated, which is required to reduce systematic uncertainties in the stellar radius measurement.

    astro-ph.HEnucl-thApJ(2018)·16 citations
  2. 06

    Forward di-hadron back-to-back correlations in collisions from rcBK evolution

    Javier L. Albacete🇪🇸 · Giuliano Giacalone🇫🇷 · Cyrille Marquet🇫🇷 · Marek Matas🇨🇿

    We study the disappearance of the away-side peak of the di-hadron correlation function in p+A vs p+p collisions at forward rapidities, when the scaterring process presents a manifest dilute-dense asymmetry. We improve the state-of-the-art description of this phenomenon in the framework of the Color Glass Condensate (CGC), for hadrons produced nearly back-to-back. In that case, the gluon content of the saturated nuclear target can be described with transverse-momentum-dependent gluon distributions, whose small- evolution we calculate numerically by solving the Balitsky-Kovchegov equation with running coupling corrections. We first show that our formalism provides a good description of the disappearance of the away-side azimuthal correlations in d+Au collisions observed at BNL Relativistic Heavy Ion Collider (RHIC) energies. Then, we predict the away-side peak of upcoming p+Au data at GeV to be suppressed by about a factor 2 with respect to p+p collisions, and we propose to study the rapidity dependence of that suppression as a complementary strong evidence of gluon saturation in experimental data.

    hep-phnucl-thPRD(2019)·74 citations
  3. 07

    Deuteron analysing powers in deuteron-proton elastic scattering at 1.2 and 2.27 GeV

    D.Mchedlishvili🇬🇪 · Z.Bagdasarian🇬🇪 · S.Barsov🇷🇺 · S.Dymov🇩🇪 · R.Engels🇩🇪 · R.Gebel🇩🇪 · K.Grigoryev🇩🇪 · J.Haidenbauer🇩🇪 · M.Hartmann🇩🇪 · A.Kacharava🇩🇪 · I.Keshelashvili🇩🇪 · A.Khoukaz🇩🇪 and 22 other authors

    The vector and tensor analysing powers in deuteron-proton elastic scattering have been measured in the forward hemisphere at deuteron kinetic energies of 1.2 GeV and 2.27 GeV using the ANKE spectrometer at the COSY storage ring. The results are compared with other experimental data and with predictions made within the framework of Glauber multiple scattering theory.

    nucl-exnucl-thNPA(2018)·8 citations

Affiliations

first authorsco-authorsvia INSPIRE