Akbari-Moghanjoughi M
Department of Physics, Faculty of Sciences, Azarbaijan Shahid Madani University, 51745-406, Tabriz, Iran.
Sci Rep. 2024 Sep 17;14(1):21717. doi: 10.1038/s41598-024-72928-5.
In this research, we study different aspects of collective gravitational quantum excitations in the framework of the quantum multistream model. The energy dispersion of collective electrostatic (plasmon) and gravitational excitations or as we call gravity quasiparticle (GQ) are derived using the nonrelativistic and relativistic models and many parameters such as the effective mass, phase, and group speed of quasiparticle excitations are studied, in detail. It is shown that, unlike plasmons with a forbidden energy gap, all positive and negative energy values are allowed for GQs. However, unlike plasmon with a dual-tone nature of collective excitations, the GQs are found to be single-tone with either wave-like or particle-like oscillations being strongly damped. The linear phase-space evolution of GQs indicates that they evolve similarly to the classical system of particles in the center of the mass frame in which the force due to self-consistent gravitational potential plays the role of interparticle forces. It is shown that the damping of wavelike or particle-like excitations in GQ energy dispersion leads to three distinct phenomena of gravitational expansion ([Formula: see text]), stable matter ([Formula: see text]) and gravitational collapse ([Formula: see text]), respectively. The Hubble-Lemaitre-like relation is obtained from the generalized probability current for GQs. The quantum gravitational interference effect is also studied.
在本研究中,我们在量子多流模型框架下研究集体引力量子激发的不同方面。利用非相对论和相对论模型推导集体静电(等离激元)和引力激发的能量色散,或者如我们所称的引力准粒子(GQ),并详细研究了许多参数,如准粒子激发的有效质量、相位和群速度。结果表明,与具有禁带能量的等离激元不同,GQ的所有正能量值和负能量值都是允许的。然而,与具有集体激发双音性质的等离激元不同,GQ被发现是单音的,其波状或粒子状振荡受到强烈阻尼。GQ的线性相空间演化表明,它们的演化类似于质心参考系中粒子的经典系统,其中自洽引力势产生的力起到粒子间力的作用。结果表明,GQ能量色散中波状或粒子状激发的阻尼分别导致引力膨胀([公式:见原文])、稳定物质([公式:见原文])和引力坍缩([公式:见原文])这三种不同的现象。从GQ的广义概率流中得到了类似哈勃 - 勒梅特的关系。还研究了量子引力干涉效应。