Ali Ahmad, S., Galley, T. D., Höhn, P. A., Lock, M. P. E., & Smith, A. R. H. (2022). Quantum Relativity of Subsystems. Physical Review Letters, 128(17), Article 170401. https://doi.org/10.1103/PhysRevLett.128.170401
E141-08 - Forschungsbereich Quantum Optics and Quantum Information
-
Journal:
Physical Review Letters
-
ISSN:
0031-9007
-
Date (published):
29-Apr-2022
-
Number of Pages:
1
-
Publisher:
AMER PHYSICAL SOC
-
Peer reviewed:
Yes
-
Keywords:
Quantum relational dynamics
en
Abstract:
One of the most basic notions in physics is the partitioning of a system into subsystems and the study of correlations among its parts. In this Letter, we explore this notion in the context of quantum reference frame (QRF) covariance, in which this partitioning is subject to a symmetry constraint. We demonstrate that different reference frame perspectives induce different sets of subsystem observable algebras, which leads to a gauge-invariant, frame-dependent notion of subsystems and entanglement. We further demonstrate that subalgebras which commute before imposing the symmetry constraint can translate into noncommuting algebras in a given QRF perspective after symmetry imposition. Such a QRF perspective does not inherit the distinction between subsystems in terms of the corresponding tensor factorizability of the kinematical Hilbert space and observable algebra. Since the condition for this to occur is contingent on the choice of QRF, the notion of subsystem locality is frame dependent.
en
Research Areas:
Quantum Modeling and Simulation: 50% Quantum Many-body Systems Physics: 50%