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Related papers: Strangeness Nucleation in Neutron Star Matter

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We construct a simple holographic QCD model to study nuclear matter to strange matter transition. The interaction of dense medium and hadrons is taken care of by imposing the force balancing condition for stable D4/D6/D6 configuration. By…

High Energy Physics - Theory · Physics 2015-05-14 Youngman Kim , Yunseok Seo , Sang-Jin Sin

After a brief discussion of a possible relationship between the electroweak phase transition in highly compressed matter and gravitational collapse, we examine the speculative possibility that the electroweak phase transition might be…

Astrophysics · Physics 2009-10-28 Walter Simmons , John Learned , Sandip Pakvasa , Xerxes Tata

Relativistic heavy ion collisions offer the possibility to produce exotic metastable states of nuclear matter containing (roughly) equal number of strangeness compared to the content in baryon number. The reasoning of both their stability…

High Energy Physics - Phenomenology · Physics 2008-11-26 Carsten Greiner

The neutrino burst detected during supernova SN1987A is explained in a strangeon star model, in which it is proposed that a pulsar-like compact object is composed of strangeons (strangeon: an abbreviation of "strange nucleon"). A nascent…

High Energy Astrophysical Phenomena · Physics 2017-09-20 Mao Yuan , Jiguang Lu , Zhiliang Yang , Xiaoyu Lai , Renxin Xu

Well into the deleptonization phase of a core collapse supernova, a first-order phase transition to matter with macroscopic strangeness content is assumed to occur and lead to a structured lattice defined by negatively charged strange…

Astrophysics · Physics 2009-11-07 J. J. Zach

Neutrino fluxes from proto-neutron stars with and without quarks are studied. Observable differences become apparent after 10--20 s of evolution. Sufficiently massive stars containing negatively-charged, strongly interacting, particles…

Astrophysics · Physics 2009-11-06 Jose A. Pons , Andrew W. Steiner , Madappa Prakash , James M. Lattimer

Gravitational waves from coalescing neutron stars encode information about nuclear matter at extreme densities, inaccessible by laboratory experiments. The late inspiral is influenced by the presence of tides, which depend on the neutron…

High Energy Astrophysical Phenomena · Physics 2020-11-09 K. Ackley , V. B. Adya , P. Agrawal , P. Altin , G. Ashton , M. Bailes , E. Baltinas , A. Barbuio , D. Beniwal , C. Blair , D. Blair , G. N. Bolingbroke , V. Bossilkov , S. Shachar Boublil , D. D. Brown , B. J. Burridge , J. Calderon Bustillo , J. Cameron , H. Tuong Cao , J. B. Carlin , S. Chang , P. Charlton , C. Chatterjee , D. Chattopadhyay , X. Chen , J. Chi , J. Chow , Q. Chu , A. Ciobanu , T. Clarke , P. Clearwater , J. Cooke , D. Coward , H. Crisp , R. J. Dattatri , A. T. Deller , D. A. Dobie , L. Dunn , P. J. Easter , J. Eichholz , R. Evans , C. Flynn , G. Foran , P. Forsyth , Y. Gai , S. Galaudage , D. K. Galloway , B. Gendre , B. Goncharov , S. Goode , D. Gozzard , B. Grace , A. W. Graham , A. Heger , F. Hernandez Vivanco , R. Hirai , N. A. Holland , Z. J. Holmes , E. Howard , E. Howell , G. Howitt , M. T. Hübner , J. Hurley , C. Ingram , V. Jaberian Hamedan , K. Jenner , L. Ju , D. P. Kapasi , T. Kaur , N. Kijbunchoo , M. Kovalam , R. Kumar Choudhary , P. D. Lasky , M. Y. M. Lau , J. Leung , J. Liu , K. Loh , A. Mailvagan , I. Mandel , J. J. McCann , D. E. McClelland , K. McKenzie , D. McManus , T. McRae , A. Melatos , P. Meyers , H. Middleton , M. T. Miles , M. Millhouse , Y. Lun Mong , B. Mueller , J. Munch , J. Musiov , S. Muusse , R. S. Nathan , Y. Naveh , C. Neijssel , B. Neil , S. W. S. Ng , V. Oloworaran , D. J. Ottaway , M. Page , J. Pan , M. Pathak , E. Payne , J. Powell , J. Pritchard , E. Puckridge , A. Raidani , V. Rallabhandi , D. Reardon , J. A. Riley , L. Roberts , I. M. Romero-Shaw , T. J. Roocke , G. Rowell , N. Sahu , N. Sarin , L. Sarre , H. Sattari , M. Schiworski , S. M. Scott , R. Sengar , D. Shaddock , R. Shannon , J. SHI , P. Sibley , B. J. J. Slagmolen , T. Slaven-Blair , R. J. E. Smith , J. Spollard , L. Steed , L. Strang , H. Sun , A. Sunderland , S. Suvorova , C. Talbot , E. Thrane , D. Töyrä , P. Trahanas , A. Vajpeyi , J. V. van Heijningen , A. F. Vargas , P. J. Veitch , A. Vigna-Gomez , A. Wade , K. Walker , Z. Wang , R. L. Ward , K. Ward , S. Webb , L. Wen , K. Wette , R. Willcox , J. Winterflood , C. Wolf , B. Wu , M. Jet Yap , Z. You , H. Yu , J. Zhang , J. Zhang , C. Zhao , X. Zhu

The properties of inhomogeneous nuclear matter are investigated considering the self-consistent Skyrme Hartree-Fock approach with inclusion of pairing correlations. For a comparison we also consider a relativistic mean field approach. The…

Nuclear Theory · Physics 2008-11-26 P. Gögelein , H. Müther

In the formation and evolution of compact stars, nuclear matter explores high thermal excursions and is the site of intense neutrino emission. Neutrino transport as well as structural properties of this matter depend on the presence of…

Nuclear Theory · Physics 2008-11-26 P. Chomaz , C. Ducoin , F. Gulminelli , K. H. O. Hasnaoui , P. Napolitani

We study the partial fragmentation of a strange quark star into strangelets during the process of merger of two strange quark stars. We discuss the fate of the fragments considering their possible evaporation into nucleons. We show that…

High Energy Astrophysical Phenomena · Physics 2022-11-09 Niccolò Bucciantini , Alessandro Drago , Giuseppe Pagliara , Silvia Traversi , Andreas Bauswein

Neutrinos produced during the collapse of a massive star are trapped in a nuclear medium (the proto-neutron star). Typically, neutrino energies (10-100 MeV) are of the order of nuclear giant resonances energies. Hence, neutrino propagation…

Nuclear Theory · Physics 2009-11-07 J. Margueron , J. Navarro , N. Van Giai

We have revisited the nucleation process based on the Lifshitz-Kagan theory, which is the underlying mechanism of conversion of a pulsar constituted of hadronic matter to a quark star. We have selected appropriate models that have been…

High Energy Astrophysical Phenomena · Physics 2017-12-15 Kauan D. Marquez , Débora P. Menezes

The phase diagram of nuclear matter is extended to strangeness and antimatter. It offers fascinating features for heavy ion physics and astrophysics. We will discuss some regions of this phase diagram as strange matter at zero temperature,…

Nuclear Theory · Physics 2007-05-23 Juergen Schaffner

Selected topics in strangeness nuclear physics are critically reviewed. This includes production, structure and weak decay of $\Lambda$--Hypernuclei, the $\bar K$ nuclear interaction and the possible existence of $\bar K$ bound states in…

Nuclear Experiment · Physics 2012-05-17 Elena Botta , Tullio Bressani , Gianni Garbarino

This review contains chapters discussing: Energy density fluctionals of nuclear matter, Many-body theory of nucleon matter, Hadronic and quark matter, Mixtures of phases in dense matter, Neutron star observations and predictions.

Astrophysics · Physics 2009-10-31 H. Heiselberg , V. Pandharipande

Thermodynamical properties of hot and dense nuclear matter are analyzed and compared for different equation of state (EoS). It is argued that the softest point of the equation of state and the strangeness separation on the phase boundary…

High Energy Physics - Phenomenology · Physics 2009-11-10 V. D. Toneev , E. G. Nikonov , B. Friman , W. Noerenberg , K. Redlich

Neutron Stars are natural laboratories where fundamental properties of matter under extreme conditions can be explored. Modern nuclear physics input as well as many-body theories are valuable tools which may allow us to improve our…

Solar and Stellar Astrophysics · Physics 2015-06-11 V. de la Mota , F. Sébille , Ph. Eudes

The study of neutron stars, or more general compact stars, is a topic of central interest in nuclear astrophysics. Furthermore, neutron stars serve as the only physical systems whose properties can be used to infer information on cold and…

Solar and Stellar Astrophysics · Physics 2013-07-19 S. Schramm , V. Dexheimer , R. Negreiros , T. Schürhoff , J. Steinheimer

We introduce in this work a class of relativistic models for nuclear matter and neutron stars which exhibits a parameterization, through mathematical constants, of the non-linear meson-baryon couplings. For appropriate choices of the…

Nuclear Theory · Physics 2009-11-06 A. R. Taurines , C. A. Z. Vasconcellos , M. Malheiro , M. Chiapparini

As the density of matter increases, atomic nuclei disintegrate into nucleons and, eventually, the nucleons themselves disintegrate into quarks. The phase transitions (PT's) between these phases can vary from steep first order to smooth…

Nuclear Theory · Physics 2017-09-29 Veronica Dexheimer , Matthias Hempel , Igor Iosilevskiy , Stefan Schramm
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