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Claes Thelander

Claes Thelander

Associate Professor

Claes Thelander

Experimental Verification of the Work Fluctuation-Dissipation Relation for Information-to-Work Conversion

Author

  • David Barker
  • Matteo Scandi
  • Sebastian Lehmann
  • Claes Thelander
  • Kimberly A. Dick
  • Martí Perarnau-Llobet
  • Ville F. Maisi

Summary, in English

We study experimentally work fluctuations in a Szilard engine that extracts work from information encoded as the occupancy of an electron level in a semiconductor quantum dot. We show that as the average work extracted per bit of information increases toward the Landauer limit Formula Presented, the work fluctuations decrease in accordance with the work fluctuation-dissipation relation. We compare the results to a protocol without measurement and feedback and show that when no information is used, the work output and fluctuations vanish simultaneously, contrasting the information-to-energy conversion case where increasing amount of work is produced with decreasing fluctuations. Our study highlights the importance of fluctuations in the design of information-to-work conversion processes.

Department/s

  • Solid State Physics
  • NanoLund: Center for Nanoscience
  • Centre for Analysis and Synthesis

Publishing year

2022-01-28

Language

English

Publication/Series

Physical Review Letters

Volume

128

Issue

4

Document type

Journal article

Publisher

American Physical Society

Topic

  • Condensed Matter Physics

Status

Published

ISBN/ISSN/Other

  • ISSN: 0031-9007