论文标题
标量调节器$ f(r,t)$重力引起的重力诱导的粒子产生
Gravitationally induced particle production in scalar-tensor $f(R,T)$ gravity
论文作者
论文摘要
我们探讨了在$ f(r,t)$重力的标量表示中产生重力产生的粒子产生的可能性。由于理论中明确的非最小曲率曲率耦合,因此物质的差异能量量张量不会消失。我们通过在存在物质创造/歼灭的情况下利用开放系统的不可逆热力学的形式主义来探索该特性的物理和宇宙学含义。粒子的产生速率,压力,温度演变和共同熵的表达是通过协变的公式获得的,并进行了详细讨论。开放系统的热力学与引力场方程一起应用,导致标准$λ$ CDM宇宙学范式的概括,其中粒子的产生速率和压力被有效地视为宇宙学流体能量量的组成部分。我们还考虑了特定的模型,并将标量调整器$ f(R,T)$宇宙学与$λ$ CDM方案和哈勃函数的观察数据进行比较。在低红移和高红移限制中,进一步研究了粒子创造速率,创造压力和通过重力生产的熵产生的特性。
We explore the possibility of gravitationally generated particle production in the scalar-tensor representation of $f(R,T)$ gravity. Due to the explicit nonminimal curvature-matter coupling in the theory, the divergence of the matter energy-momentum tensor does not vanish. We explore the physical and cosmological implications of this property by using the formalism of irreversible thermodynamics of open systems in the presence of matter creation/annihilation. The particle creation rates, pressure, temperature evolution and the expression of the comoving entropy are obtained in a covariant formulation and discussed in detail. Applied together with the gravitational field equations, the thermodynamics of open systems lead to a generalization of the standard $Λ$CDM cosmological paradigm, in which the particle creation rates and pressures are effectively considered as components of the cosmological fluid energy-momentum tensor. We also consider specific models, and compare the scalar-tensor $f(R,T)$ cosmology with the $Λ$CDM scenario and the observational data for the Hubble function. The properties of the particle creation rates, of the creation pressures, and entropy generation through gravitational matter production are further investigated in both the low and high redshift limits.