不确定性原理
等效原理(几何)
经典力学
广义相对论
测地线
对应原理(社会学)
物理
万有引力
观察员(物理)
泊松括号
数学物理
理论物理学
数学
数学分析
量子力学
量子
李代数
经济
市场经济
作者
Roberto Casadio,Fabio Scardigli
标识
DOI:10.1016/j.physletb.2020.135558
摘要
The Generalized Uncertainty Principle (GUP) has been directly applied to the motion of (macroscopic) test bodies on a given space-time in order to compute corrections to the classical orbits predicted in Newtonian Mechanics or General Relativity. These corrections generically violate the Equivalence Principle. The GUP has also been indirectly applied to the gravitational source by relating the GUP modified Hawking temperature to a deformation of the background metric. Such a deformed background metric determines new geodesic motions without violating the Equivalence Principle. We point out here that the two effects are mutually exclusive when compared with experimental bounds. Moreover, the former stems from modified Poisson brackets obtained from a wrong classical limit of the deformed canonical commutators.
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