Asosiy kontentga oʻtish
AkademIndex

Mahsulotlar

Ishlab chiquvchilar uchun

AkademBasetez oradaEkotizim uchun ochiq API
Lotin
Oʻzbek
Maqola

Existence of quark stars in gravity's rainbow: the significance of strongly interacting quark matter*

Ayan BanerjeeMathematics, University of KwaZulu-Natal School of Agricultural Earth and Environmental Sciences, King George V Avenue, Glenwood, Durban, KZN, 4001, SOUTH AFRICAIndrani KararUniversity of Kalyani, Nadia, Kalyani, WB, 741235, INDIAJavlon Rayimbaev, Astronomicheskaya 33, TASHKENT, TASHKENT, 100052, UZBEKISTANInomjon Ibragimov, Shota Rustaveli street 156, Tashkent, Tashkent Province, 100121, UZBEKISTANSardor MurodovNew Uzbekistan University, Movoraunnaxr Str 1, Tashkent, Tashkent Province, 100000, UZBEKISTANSokhibjan MuminovHorezmskaâ akademiâ Ma'muna, Bolkhovuz Street 2, Khiva, Khorezm Province, 220900, UZBEKISTANSardor JumaniyozovUrgench State University named after Al-Khorezmi, Kh. Alimjan Str 14, Urgench, Khorezm Province, 740000, UZBEKISTAN
Chinese Physics Cjournal2025en
ABI

Annotatsiya

Abstract This study explores the internal composition and equation of state (EoS) of quark stars (QSs) characterized by pressure anisotropy, considering recent astrophysical findings within the framework of gravity's rainbow. By employing perturbative quantum chromodynamics corrections and the concept of color superconductivity, the EoS is formulated as a dimensionless function reliant on a single parameter, thereby offering an in-depth analysis of the effects of strong interactions. The study is further extended by rescaling the EoS and applying dimensionless variables, thus covering the range from non-interacting quark matter to extreme stiffness characterized by a parameter . We also show that including the fluid anisotropy permits a stiffer EoS, facilitating the modeling of configurations that adequately meet observational constraints. We then use the supposed EoSs to numerically solve the modified Tolman-Oppenheimer-Volkoff equations and examine the effects of anisotropy and rainbow parameters on star mass, radius, and compactness. The study also explores the static stability, adiabatic index, and sound velocity profiles, thoroughly explaining QS behavior. Overall, this study offers valuable insights into the characteristics of QSs and their consistency with observational data, providing a comprehensive analysis of their EoS and internal structure.

Mavzular

Identifikatorlar

Iqtiboslar va manbalar

Koʻrsatkichlar — AkademScholar · Tez orada