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Rigorous Hamiltonian and Lagrangian analysis of classical and quantum theories with minimal length

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abstract

GUP is a phenomenological model aimed for a description of a minimal length in quantum and classical systems. However, the analysis of problems in classical physics is usually approached preferring a different formalism than the one used for quantum systems, and vice versa. Potentially, the two approaches can result in inconsistencies. Here, we eliminate such inconsistencies proposing particular meanings and relations between the variables used to describe physical systems, resulting in a precise form of the Legendre transformation. Furthermore, we introduce two different sets of canonical variables and the relative map between them. These two sets allow for a complete and unambiguous description of classical and quantum systems.

fields

gr-qc 1

years

2025 1

verdicts

CONDITIONAL 1

representative citing papers

Test of Quantum Gravity in Optical Magnetometers

gr-qc · 2025-05-10 · conditional · novelty 4.0

GUP-induced shifts and broadening of the 129Xe Larmor frequency are estimated to be reachable with a projected 10^-15 sensitivity magnetometer if the GUP parameter α0 is near 10^8.

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  • Test of Quantum Gravity in Optical Magnetometers gr-qc · 2025-05-10 · conditional · none · ref 31 · internal anchor

    GUP-induced shifts and broadening of the 129Xe Larmor frequency are estimated to be reachable with a projected 10^-15 sensitivity magnetometer if the GUP parameter α0 is near 10^8.