4.4 Article

Properties of Strange Quark Matter in the Context of Diquark Correlation

期刊

ANNALEN DER PHYSIK
卷 534, 期 11, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/andp.202200297

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diquark; equation of states; sound velocity; strange quark matter; quasi particles

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Properties of strange quark matter have been investigated, considering it as diquark matter with quark correlation. It is observed that diquarks exhibit quasiparticle behavior under strong magnetic field. Furthermore, using the composite fermion model, the binding energy of the system is reduced, resulting in a more stable state of strange quark matter.
Properties of strange quark matter (SQM) have been studied as diquark matter with diquark correlation. The dense SQM is under strong magnetic field due to electroweak interaction of quarks. Here it is suggested that u, d, s quarks get correlated to form diquark matter of different flavors. The diquarks are suggested to behave like quasiparticles under the influence of strong magnetic field inside the dense quark matter. In the current work diquarks are described as the composite fermions which behave like quasiparticle under the strong magneticfield in an analogy with the electrons behaving in strong magnetic field. The thermodynamic potential for SQM has been estimated and behavior is studied with respect to chemical potential. The equation of state and the velocity of sound through SQM are also studied. Some interesting observations are made. It is suggested that the composite fermion picture of diquark correlation lowers the binding energy of the system making the SQM a more stable state.

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