A Tunable Unruh Effect: Accelerated Detectors in Kappa-Rindler Vacua

Fuente: arXiv
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Main Author: Azizi, Arash
Format: Preprint
Published: 2025
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author Azizi, Arash
author_facet Azizi, Arash
contents We study the response of an accelerated Unruh-DeWitt detector to a one-parameter family of ``kappa Rindler'' vacua, which generalize the standard Unruh effect. These states, parameterized by $κ$, continuously interpolate between the Rindler ($κ\to 0$) and Minkowski ($κ=1$) vacua. We find the detector registers a perfect thermal bath at a tunable temperature $T_κ= κT_U$. This result establishes a framework for environments perceived as both ``hotter'' ($κ>1$) and ``colder'' ($κ<1$) than the standard Unruh temperature. We establish this thermality by demonstrating the KMS condition for the Wightman function and by analyzing the associated particle creation process. Furthermore, we visualize the spacetime structure of the created field quanta, revealing an intuitive link between the $κ$-controlled symmetry of the modes and the perceived temperature. Our work provides a comprehensive framework for a modulated Unruh effect, bridging formal QFT with clear visual intuition.
format Preprint
id arxiv_https___arxiv_org_abs_2507_00174
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Tunable Unruh Effect: Accelerated Detectors in Kappa-Rindler Vacua
Azizi, Arash
High Energy Physics - Theory
We study the response of an accelerated Unruh-DeWitt detector to a one-parameter family of ``kappa Rindler'' vacua, which generalize the standard Unruh effect. These states, parameterized by $κ$, continuously interpolate between the Rindler ($κ\to 0$) and Minkowski ($κ=1$) vacua. We find the detector registers a perfect thermal bath at a tunable temperature $T_κ= κT_U$. This result establishes a framework for environments perceived as both ``hotter'' ($κ>1$) and ``colder'' ($κ<1$) than the standard Unruh temperature. We establish this thermality by demonstrating the KMS condition for the Wightman function and by analyzing the associated particle creation process. Furthermore, we visualize the spacetime structure of the created field quanta, revealing an intuitive link between the $κ$-controlled symmetry of the modes and the perceived temperature. Our work provides a comprehensive framework for a modulated Unruh effect, bridging formal QFT with clear visual intuition.
title A Tunable Unruh Effect: Accelerated Detectors in Kappa-Rindler Vacua
topic High Energy Physics - Theory
url https://arxiv.org/abs/2507.00174