Precision and cost of feedback cooling

Fuente: arXiv
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Main Authors: Dechant, Andreas, Hüpfl, Jakob, Kobayashi, Shuta, Ito, Sosuke, Rotter, Stefan
Format: Preprint
Published: 2025
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_version_ 1866909740722814976
author Dechant, Andreas
Hüpfl, Jakob
Kobayashi, Shuta
Ito, Sosuke
Rotter, Stefan
author_facet Dechant, Andreas
Hüpfl, Jakob
Kobayashi, Shuta
Ito, Sosuke
Rotter, Stefan
contents We investigate the consequences of information exchange between a system and a measurement-feedback apparatus that cools the system below the environmental temperature. A quantitative relationship between entropy pumping and information acquired about the system is derived, showing that, independent of the concrete realization of the feedback, the latter exceeds the former by a positive amount of excess information flow. This excess information flow satisfies a trade-off relation with the precision of the feedback force, which places strong constraints on both the information-theoretic cost of feedback cooling and the required magnitude of the feedback force. From these constraints, a fundamental lower bound on the energetic cost of optical feedback cooling is derived. Finally, the results are demonstrated for feedback cooling by coherent light scattering. We show that measurement precision is the major factor determining the attainable temperature. Precise measurements can also be leveraged to reduce the required feedback force, leading to significantly more energy-efficient cooling close to the fundamental bound for realistic parameter values.
format Preprint
id arxiv_https___arxiv_org_abs_2508_12875
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Precision and cost of feedback cooling
Dechant, Andreas
Hüpfl, Jakob
Kobayashi, Shuta
Ito, Sosuke
Rotter, Stefan
Statistical Mechanics
Optics
We investigate the consequences of information exchange between a system and a measurement-feedback apparatus that cools the system below the environmental temperature. A quantitative relationship between entropy pumping and information acquired about the system is derived, showing that, independent of the concrete realization of the feedback, the latter exceeds the former by a positive amount of excess information flow. This excess information flow satisfies a trade-off relation with the precision of the feedback force, which places strong constraints on both the information-theoretic cost of feedback cooling and the required magnitude of the feedback force. From these constraints, a fundamental lower bound on the energetic cost of optical feedback cooling is derived. Finally, the results are demonstrated for feedback cooling by coherent light scattering. We show that measurement precision is the major factor determining the attainable temperature. Precise measurements can also be leveraged to reduce the required feedback force, leading to significantly more energy-efficient cooling close to the fundamental bound for realistic parameter values.
title Precision and cost of feedback cooling
topic Statistical Mechanics
Optics
url https://arxiv.org/abs/2508.12875