The microsecond old universe — Relics of QCD phase transition

Author:

Sinha Bikash12

Affiliation:

1. Variable Energy Cyclotron Centre, 1/AF, Bidhannagar, Kolkata-700 064, India

2. Bose Institute, 91/1 APC Road, Kolkata-700 009, India

Abstract

It is entirely plausible under reasonable conditions, that a first-order QCD phase transition occurred from quarks to hadrons when the universe was about a microsecond old. Relics, if there be any, after the quark–hadron phase transition are the most deciding signatures of the phase transition. It is shown in this paper that quark nuggets, the possible relics of first-order QCD phase transitions with baryon number larger than 1043 will survive the entire history of the universe up to now and can be considered as a candidate for the cold dark matter. The spin down core of the neutron star on the high density low temperature end of the QCD phase diagram initiates transition from hadrons to quarks. As the star spins down, the size of the core goes on increasing. Recently discovered massive Pulsar PSRJ 1614-2230 with a mass of 1.97 ± 0.04M most likely has a strongly interacting core. What possible observables can there be from these neutron stars?

Publisher

World Scientific Pub Co Pte Lt

Subject

Astronomy and Astrophysics,Nuclear and High Energy Physics,Atomic and Molecular Physics, and Optics

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