Experimental Test of the Jarzynski Equality in a Single Spin-1 System Using High-Fidelity Single-Shot Readouts

Wenquan Liu, Zhibo Niu, Wei Cheng, Xin Li, Chang Kui Duan, Zhangqi Yin, Xing Rong, Jiangfeng Du

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摘要

The Jarzynski equality (JE), which connects the equilibrium free energy with nonequilibrium work statistics, plays a crucial role in quantum thermodynamics. Although practical quantum systems are usually multilevel systems, most tests of the JE were executed in two-level systems. A rigorous test of the JE by directly measuring the work distribution of a physical process in a high-dimensional quantum system remains elusive. Here, we report an experimental test of the JE in a single spin-1 system. We realized nondemolition projective measurement of this three-level system via cascading high-fidelity single-shot readouts and directly measured the work distribution utilizing the two-point measurement protocol. The validity of the JE was verified from the nonadiabatic to adiabatic zone and under different effective temperatures. Our work puts the JE on a solid experimental foundation and makes the nitrogen-vacancy (NV) center system a mature toolbox to perform advanced experiments of stochastic quantum thermodynamics.

源语言英语
文章编号220401
期刊Physical Review Letters
131
22
DOI
出版状态已出版 - 1 12月 2023

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Liu, W., Niu, Z., Cheng, W., Li, X., Duan, C. K., Yin, Z., Rong, X., & Du, J. (2023). Experimental Test of the Jarzynski Equality in a Single Spin-1 System Using High-Fidelity Single-Shot Readouts. Physical Review Letters, 131(22), 文章 220401. https://doi.org/10.1103/PhysRevLett.131.220401