English

On optimal cloning and incompatibility

Quantum Physics 2021-09-20 v2

Abstract

We investigate the role of symmetric quantum cloning machines (QCMs) in quantifying the mutual incompatibility of quantum observables. Specifically, we identify a cloning-based incompatibility measure whereby the incompatibility of a set of observables maybe quantified in terms of how well a uniform ensemble of their eigenstates can be cloned via a symmetric QCM. We show that this new incompatibility measure Qc\mathcal{Q}_{c} is {\it faithful} since it vanishes only for commuting observables. We prove an upper bound for Qc\mathcal{Q}_{c} for any set of observables in a finite-dimensional system and show that the upper bound is attained if and only if the observables are mutually unbiased. Finally, we use our formalism to obtain the optimal quantum cloner for a pair of qubit observables. Our work marks an important step in formalising the connection between two fundamental concepts in quantum information theory, namely, the no-cloning principle and the existence of incompatible observables in quantum theory.

Keywords

Cite

@article{arxiv.1908.04182,
  title  = {On optimal cloning and incompatibility},
  author = {Arindam Mitra and Prabha Mandayam},
  journal= {arXiv preprint arXiv:1908.04182},
  year   = {2021}
}

Comments

13 pages, 2 figures

R2 v1 2026-06-23T10:45:15.951Z