Thermodynamics of information

The work

AuthorsJuan M. R. Parrondo; Jordan M. Horowitz; Takahiro Sagawa
Editors
Typearticle
Year2015
Citekeyparrondo2015thermodynamics

Where it appeared

Published inNature Physics
PublisherNature Portfolio
Volume11
Issue2
Pages131--139

Identifiers

DOI10.1038/nphys3230
OpenAlexW2071214852

Related

Distinct fromparrondo2023thermodynamics
Distinct fromsagawa2012thermodynamics

Abstract

By its very nature, the second law of thermodynamics is probabilistic, in that its formulation requires a probabilistic description of the state of a system. This raises questions about the objectivity of the second law: does it depend, for example, on what we know about the system? For over a century, much effort has been devoted to incorporating information into thermodynamics and assessing the entropic and energetic costs of manipulating information. More recently, this historically theoretical pursuit has become relevant in practical situations where information is manipulated at small scales, such as in molecular and cell biology, artificial nano-devices or quantum computation. Here we give an introduction to a novel theoretical framework for the thermodynamics of information based on stochastic thermodynamics and fluctuation theorems, review some recent experimental results, and present an overview of the state of the art in the field. The task of integrating information into the framework of thermodynamics dates back to Maxwell and his infamous demon. Recent advances have made these ideas rigorous---and brought them into the laboratory.

How it got here

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Added2026-08-04 00:00 UTC
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Cite it as

@article{parrondo2015thermodynamics,
  title        = {Thermodynamics of information},
  author       = {Juan M. R. Parrondo and Jordan M. Horowitz and Takahiro Sagawa},
  year         = {2015},
  journal      = {Nature Physics},
  publisher    = {Nature Portfolio},
  volume       = {11},
  number       = {2},
  pages        = {131--139},
  doi          = {10.1038/nphys3230},
}

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