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Quantum Simulation
Affine Symmetry and the Group-Theoretic Basis of the Unruh Effect
arXiv
Authors: Michele Arzano, Alessandra D'Alise, Simone del Rosso, Domenico Frattulillo
Year
2025
Paper ID
36170
Status
Preprint
Abstract Read
~2 min
Abstract Words
156
Citations
N/A
Abstract
A massless scalar field in two spacetime dimensions splits into two independent sectors of left and right-moving modes on the light cone. At the quantum level, these two sectors carry a representation of the group of affine transformations of the real line, with translations corresponding to transformations generated by light-cone momenta and dilations given by light-cone Rindler momenta formed by a linear combination of generators of boosts and dilations. One-particle states for inertial observers are eigenvectors of translation generators belonging to irreducible representations of the affine group. Rindler one-particle states are related to eigenfunctions of the generator of dilations. We show that simple manipulations connecting these two representations involving the Mellin transform can be used to derive the thermal spectrum of Rindler particles observed by an accelerated observer. Beyond providing a representation-theoretic basis for vacuum thermal effects, our results suggest that analogous phenomena may arise in any quantum system admitting realizations of translation and dilation eigenstates.
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- This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
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- A massless scalar field in two spacetime dimensions splits into two independent sectors of left and right-moving modes on the light cone.
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