Quantum energetics of a noncommuting measurement

Author:

Linpeng Xiayu12,Piccione Nicolò345ORCID,Maffei Maria367,Bresque Léa3ORCID,Prasad Samyak P.389,Jordan Andrew N.1011ORCID,Auffèves Alexia389,Murch Kater W.2ORCID

Affiliation:

1. International Quantum Academy

2. Washington University, St. Louis

3. Université Grenoble Alpes

4. University of Trieste

5. Istituto Nazionale di Fisica Nucleare

6. Università di Bari

7. INFN

8. MajuLab

9. National University of Singapore

10. Chapman University

11. University of Rochester

Abstract

When a measurement observable does not commute with a quantum system's Hamiltonian, the energy of the measured system is typically not conserved during the measurement. Instead, energy can be transferred between the measured system and the meter. In this work, we experimentally investigate the energetics of noncommuting measurements in a circuit quantum electrodynamics system containing a transmon qubit embedded in a 3D microwave cavity. We show through spectral analysis of the cavity photons that a frequency shift is imparted on the probe, in balance with the associated energy changes of the qubit. Our experiment provides new insights into foundations of quantum measurement, as well as a better understanding of the key mechanisms at play in quantum energetics. Published by the American Physical Society 2024

Funder

John Templeton Foundation

National Science Foundation

Gordon and Betty Moore Foundation

Publisher

American Physical Society (APS)

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