English

Quantum circuits for measuring weak values, Kirkwood--Dirac quasiprobability distributions, and state spectra

Quantum Physics 2024-01-05 v3

Abstract

Weak values and Kirkwood--Dirac (KD) quasiprobability distributions have been independently associated with both foundational issues in quantum theory and advantages in quantum metrology. We propose simple quantum circuits to measure weak values, KD distributions, and spectra of density matrices without the need for post-selection. This is achieved by measuring unitary-invariant, relational properties of quantum states, which are functions of Bargmann invariants, the concept that underpins our unified perspective. Our circuits also enable experimental implementation of various functions of KD distributions, such as out-of-time-ordered correlators (OTOCs) and the quantum Fisher information in post-selected parameter estimation, among others. An upshot is a unified view of nonclassicality in all those tasks. In particular, we discuss how negativity and imaginarity of Bargmann invariants relate to set coherence.

Keywords

Cite

@article{arxiv.2302.00705,
  title  = {Quantum circuits for measuring weak values, Kirkwood--Dirac quasiprobability distributions, and state spectra},
  author = {Rafael Wagner and Zohar Schwartzman-Nowik and Ismael L. Paiva and Amit Te'eni and Antonio Ruiz-Molero and Rui Soares Barbosa and Eliahu Cohen and Ernesto F. Galvão},
  journal= {arXiv preprint arXiv:2302.00705},
  year   = {2024}
}

Comments

27+6 pages, 7+5 figures. v2: new sections 2.3, 2.4, 3, 4.5, revised structure. v3: improved section 5, added references. Comments are welcome!

R2 v1 2026-06-28T08:29:31.543Z