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We investigate the possibility and impacts of a first-order phase transition from hadronic matter to quark matter in neutron stars (NSs) using two specific models: the parity doublet model (PDM) for the hadronic phase and the…

Nuclear Theory · Physics 2024-07-22 Bikai Gao , Wen-Li Yuan , Masayasu Harada , Yong-Liang Ma

We investigate the implications of neutron star observations for understanding the origin of nucleon mass using a framework that combines three complementary approaches: the equation of state based on parity doublet structure for hadronic…

Nuclear Theory · Physics 2025-08-04 Bikai Gao , Xiang Liu , Masayasu Harada , Yong-Liang Ma

In this contribution, we summarize our recent studies on the chiral invariant mass and the chiral condensates in neutron star matter. We construct a unified equations of state assuming the crossover phase transition from hadronic matter…

Nuclear Theory · Physics 2022-02-11 Takuya Minamikawa , Toru Kojo , Masayasu Harada

We examine which first order phase transitions are consistent with today's astrophysical constraints. In particular, we explore how a well-constrained mass-radius data point would restrict the admissible parameter space and to this end, we…

Nuclear Theory · Physics 2024-03-26 Jan-Erik Christian , Jürgen Schaffner-Bielich , Stephan Rosswog

We review the chiral variant and invariant components of nucleon masses and its consequence on the chiral restoration in extreme conditions, neutron star matter in particular. We consider a model of linear realization of chiral symmetry…

Nuclear Theory · Physics 2023-02-03 Takuya Minamikawa , Bikai Gao , Toru kojo , Masayasu Harada

In this work, we consider the properties of compact stars in which quark matter has low- and high-density phases that are separated by a first-order phase transition. Thus, unlike the commonly considered case of a single phase transition…

High Energy Astrophysical Phenomena · Physics 2023-03-27 Jia Jie Li , Armen Sedrakian , Mark Alford

We develop our previous study of the transition to deconfined quark phase in neutron stars, including the interaction in the quark equation of state to the leading order in the perturbative expansion within the confinement density-dependent…

Solar and Stellar Astrophysics · Physics 2015-06-24 A. Li , W. Zuo , G. -X. Peng

We construct an equation of state (EOS) for neutron stars by interpolating hadronic EOS at low density and quark EOS at high density. A hadronic model based on the parity doublet structure is used for hadronic matter and a quark model of…

Nuclear Theory · Physics 2021-05-05 Takuya Minamikawa , Toru Kojo , Masayasu Harada

The recent precise measurement of the mass of pulsar PSR J1614$-$2230, as well as observational indications of even more massive neutron stars, has revived the question of the composition of matter at the high densities prevailing inside…

Nuclear Theory · Physics 2013-04-25 N. Chamel , A. F. Fantina , J. M. Pearson , S. Goriely

Neutron star interiors provide the opportunity to probe properties of cold dense matter in the QCD phase diagram. Utilizing models of dense matter in accord with nuclear systematics at nuclear densities, we investigate the compatibility of…

High Energy Astrophysical Phenomena · Physics 2020-06-01 Sophia Han , M. A. A. Mamun , S. Lalit , C. Constantinou , M. Prakash

We extend the parity doublet model for hadronic matter and study the possible presence of quark matter inside the cores of neutron stars with the Nambu-Jona-Lasinio (NJL) model. Considering the uncertainties of the QCD phase diagram and the…

Nuclear Theory · Physics 2025-12-09 Wen-Li Yuan , Bikai Gao , Yan Yan , Bo-Lin Li , Renxin Xu

We investigate the chemical potential and baryon number density of the hadron-quark phase transition in neutron star matter. The hadron matter is described with relativistic mean field theory, and the quark matter is described with the…

Nuclear Theory · Physics 2019-09-04 Zhan Bai , Yu-xin Liu

The last few years have seen tremendous progress in the observation of the global properties of neutron stars (NSs), e.g. masses, radii and tidal deformabilities. Such properties provide information about possible phase transitions in the…

High Energy Astrophysical Phenomena · Physics 2022-06-08 Rahul Somasundaram , Jérôme Margueron

Causality is an essential factor in determining the maximum mass of a neutron star. Previous works study causality for smooth equations of state. The density at the core of neutron stars can be a few times nuclear saturation density, where…

High Energy Astrophysical Phenomena · Physics 2024-11-11 Asim kumar Saha , Ritam Mallick

We extend the quark mean-field (QMF) model for nuclear matter and study the possible presence of quark matter inside the cores of neutron stars. A sharp first-order hadron-quark phase transition is implemented combining the QMF for the…

Nuclear Theory · Physics 2020-11-30 Zhiqiang Miao , Ang Li , Zhenyu Zhu , Sophia Han

The quark-hadron phase transition at finite baryon chemical potential is investigated in the extended Nambu-Jona-Lasinio model in which the scalar-vector eight-point interaction is included holding the chiral symmetry. By comparing a…

High Energy Physics - Phenomenology · Physics 2015-03-13 Y. Tsue , J. da Providencia , C. Providencia , M. Yamamura

We review the equation of state of matter in neutron stars from the solid crust through the liquid nuclear matter interior to the quark regime at higher densities. We focus in detail on the question of how quark matter appears in neutron…

High Energy Astrophysical Phenomena · Physics 2018-08-06 Gordon Baym , Tetsuo Hatsuda , Toru Kojo , Philip D. Powell , Yifan Song , Tatsuyuki Takatsuka

We investigate the gravitational wave spectrum from first-order QCD phase transitions using the parity doublet model at finite baryon chemical potential. The model incorporates the chiral invariant mass $m_0$, representing the portion of…

Nuclear Theory · Physics 2026-04-02 Bikai Gao , Jingdong Shao , Hong Mao

The highlights and main results of this work can be summarized as follows : (1) The energy per nucleon of cold nuclear matter, derived by us using chiral sigma model, is in good agreement with the preliminary estimates inferred from…

High Energy Physics - Phenomenology · Physics 2008-02-03 Pradip Kumar Sahu

We study the impact of a hadron-quark phase transition on the maximum neutron-star mass. The hadronic part of the equation of state relies on the most up-to-date Skyrme nuclear energy density functionals, fitted to essentially all…

High Energy Astrophysical Phenomena · Physics 2013-04-26 N. Chamel , A. F. Fantina , J. M. Pearson , S. Goriely
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