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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Generalized uncertainty principle: Approaches and applications
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Generalized uncertainty principle: Approaches and applications

机译:广义不确定性原理:方法与应用

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In this paper, we review some highlights from the String theory, the black hole physics and the doubly special relativity and some thought experiments which were suggested to probe the shortest distances and/or maximum momentum at the Planck scale. Furthermore, all models developed in order to implement the minimal length scale and/or the maximum momentum in different physical systems are analyzed and compared. They entered the literature as the generalized uncertainty principle (GUP) assuming modified dispersion relation, and therefore are allowed for a wide range of applications in estimating, for example, the inflationary parameters, Lorentz invariance violation, black hole thermodynamics, Saleker-Wigner inequalities, entropic nature of gravitational laws, Friedmann equations, minimal time measurement and thermodynamics of the high-energy collisions. One of the higher-order GUP approaches gives predictions for the minimal length uncertainty. A second one predicts a maximum momentum and a minimal length uncertainty, simultaneously. An extensive comparison between the different GUP approaches is summarized. We also discuss the GUP impacts on the equivalence principles including the universality of the gravitational redshift and the free fall and law of reciprocal action and on the kinetic energy of composite system. The existence of a minimal length and a maximum momentum accuracy is preferred by various physical observations. The concern about the compatibility with the equivalence principles, the universality of gravitational redshift and the free fall and law of reciprocal action should be addressed. We conclude that the value of the GUP parameters remain a puzzle to be verified.
机译:在本文中,我们回顾了弦理论,黑洞物理学和双重相对论的一些亮点,并提出了一些思想实验,以探讨普朗克尺度上的最短距离和/或最大动量。此外,分析和比较了为在不同物理系统中实现最小长度比例和/或最大动量而开发的所有模型。他们假设修改后的色散关系作为广义不确定性原理(GUP)进入文献,因此可广泛用于估算膨胀参数,洛仑兹不变性违规,黑洞热力学,Saleker-Wigner不等式,引力定律的熵性质,Friedmann方程,最小时间测量和高能碰撞的热力学。一种高阶GUP方法可以预测最小长度的不确定性。第二个同时预测最大动量和最小长度不确定性。总结了不同GUP方法之间的广泛比较。我们还讨论了GUP对等价原理的影响,包括万有引力红移,自由落体和往复作用定律以及对复合系统动能的影响。各种物理观察都希望存在最小长度和最大动量精度。应解决以下问题:与等价原理的兼容性,引力红移的普遍性以及自由落体和对等作用定律。我们得出结论,GUP参数的值仍然是一个有待验证的难题。

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