A Quantum Informational Approach to the Problem of Time

被引:0
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作者
Salman Sajad Wani
James Q. Quach
Mir Faizal
Sebastian Bahamonde
Behnam Pourhassan
机构
[1] Istanbul Technical University,Department of Physics Engineering
[2] Canadian Quantum Research Center,Institute for Photonics and Advanced Sensing and School of Physical Science
[3] The University of Adelaide,Irving K. Barber School of Arts and Sciences
[4] University of British Columbia - Okanagan,Department of Physics and Astronomy
[5] University of Lethbridge,Laboratory of Theoretical Physics, Institute of Physics
[6] University of Tartu,Department of Physics
[7] Tokyo Institute of Technology,Laboratory for Theoretical Cosmology
[8] Tomsk State University of Control Systems and Radioelectronics (TUSUR),School of Physics
[9] Damghan University,undefined
来源
Foundations of Physics | 2022年 / 52卷
关键词
Problem of time; Quantum information; Hamiltonian constraint; Time crystals;
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学科分类号
摘要
Several novel approaches have been proposed to resolve the problem of time by relating it to change. We argue using quantum information theory that the Hamiltonian constraint in quantum gravity cannot probe change, so it cannot be used to obtain a meaningful notion of time. This is due to the absence of quantum Fisher information with respect to the quantum Hamiltonian of a time-reparametization invariant system. We also observe that the inability of this Hamiltonian to probe change can be related to its inability to discriminate between states of such a system. However, if the time-reparametization symmetry is spontaneously broken due to the formation of quantum cosmological time crystals, these problems can be resolved, and it is possible for time to emerge in quantum gravity.
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