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Modified Unruh effect from Generalized Uncertainty Principle

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abstract

We consider a generalized uncertainty principle (GUP) corresponding to a deformation of the fundamental commutator obtained by adding a term quadratic in the momentum. From this GUP, we compute corrections to the Unruh effect and related Unruh temperature, by first following a heuristic derivation, and then a more standard field theoretic calculation. In the limit of small deformations, we recover the thermal character of the Unruh radiation. Corrections to the temperature at first order in the deforming parameter are compared for the two approaches, and found to be in agreement as for the dependence on the cubic power of the acceleration of the reference frame. The dependence of the shifted temperature on the frequency is also pointed out and discussed.

fields

gr-qc 1

years

2025 1

verdicts

UNVERDICTED 1

representative citing papers

From minimal-length quantum theory to modified gravity

gr-qc · 2025-11-18 · unverdicted · novelty 5.0

A systematic mapping is derived from GUP parameters in minimal-length quantum theory to higher-order curvature coefficients in extended gravity, with an application yielding an upper bound on the minimal measurable length via light deflection corrections.

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  • From minimal-length quantum theory to modified gravity gr-qc · 2025-11-18 · unverdicted · none · ref 45 · internal anchor

    A systematic mapping is derived from GUP parameters in minimal-length quantum theory to higher-order curvature coefficients in extended gravity, with an application yielding an upper bound on the minimal measurable length via light deflection corrections.