English

Unsharp measurements and joint measurability

Quantum Physics 2015-05-19 v1

Abstract

We give an overview of joint unsharp measurements of non-commuting observables using positive operator valued measures (POVMs). We exemplify the role played by joint measurability of POVMs in entropic uncertainty relation for Alice's pair of non-commuting observables in the presence of Bob's entangled quantum memory. We show that Bob should record the outcomes of incompatible (non-jointly measurable) POVMs in his quantum memory so as to beat the entropic uncertainty bound. In other words, in addition to the presence of entangled Alice-Bob state, implementing incompatible POVMs at Bob's end is necessary to beat the uncertainty bound and hence, predict the outcomes of non-commuting observables with improved precision. We also explore the implications of joint measurability to {\em validate} a moment matrix constructed from average pairwise correlations of three dichotomic non-commuting qubit observables. We prove that a classically acceptable moment matrix -- which ascertains the existence of a legitimate joint probability distribution for the outcomes of all the three dichotomic observables -- could be realized if and only if compatible POVMs are employed.

Keywords

Cite

@article{arxiv.1505.04246,
  title  = {Unsharp measurements and joint measurability},
  author = {H. S. Karthik and A. R. Usha Devi and A. K. Rajagopal},
  journal= {arXiv preprint arXiv:1505.04246},
  year   = {2015}
}

Comments

RevTeX, 8 pages, No figures. Based on the work presented in the "Discussion Meeting on Quantum Measurements"(DMQM2014) held at Bangalore during 22-24 October, 2014

R2 v1 2026-06-22T09:35:23.021Z