修正矢量MIT包模型中的奇异夸克星:ρ和φ介子的作用

IF 4.5 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Mukul Wadhwa, Manisha Kumari, Arvind Kumar
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引用次数: 0

摘要

在本工作中,我们使用在矢量通道中进行修正的矢量MIT包模型来研究奇异夸克星(SQSs)的性质。不像最近的研究只考虑通过ω介子的相互作用,我们分析了ρ和φ矢量通道的可能性。我们考虑了矢量介子的两种高阶非线性自相互作用项。在此基础上,计算了不同矢量耦合强度下奇异星的状态方程(EoS)和质量半径。考虑到ρ和φ矢量介子以及ω,以及矢量耦合强度gv的增加,提高了SQSs的质量和半径。对于本计算中考虑的两类矢量介子的非线性自相互作用,我们观察到在矢量耦合gv=3时,最大质量分别为2.48和2.42M⊙。相应的半径分别为12.27 km和12.18 km。我们还计算了恒星的潮汐变形参数Λ、Love数k2和引力红移。观测到潮汐变形能力参数Λ随gv的增大而增大,对低质量恒星有明显的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strange quark stars in modified vector MIT bag model: Role of ρ and ϕ mesons
In the present work, we study the properties of strange quark stars (SQSs) using the vector MIT bag model with modification in vector channels. Unlike recent studies which only consider interactions through ω mesons, we analyze the possibility of ρ and ϕ vector channels. We consider two types of higher order non-linear self-interaction terms for the vector mesons. With these modifications, we computed the equation of state (EoS) and mass-radius of strange stars for different values of vector coupling strength. Considerations of ρ and ϕ vector mesons along with ω, as well as an increase in the strength of vector coupling gv, enhance the mass and radius of SQSs. For two kind of non-linear self-interactions of vector mesons considered in the present calculations, we observe the SQSs with maximum mass 2.48 and 2.42M for the vector coupling gv=3. Corresponding radii of these SQSs are found to be 12.27 and 12.18 km, respectively. We also calculate the tidal deformability parameter Λ, the Love number k2 and the gravitational redshift of SQSs. The tidal deformability parameter Λ is observed to increase with gv, with appreciable effect for low mass stars.
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来源期刊
Physics Letters B
Physics Letters B 物理-物理:综合
CiteScore
9.10
自引率
6.80%
发文量
647
审稿时长
3 months
期刊介绍: Physics Letters B ensures the rapid publication of important new results in particle physics, nuclear physics and cosmology. Specialized editors are responsible for contributions in experimental nuclear physics, theoretical nuclear physics, experimental high-energy physics, theoretical high-energy physics, and astrophysics.
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