English

Quantum enhanced precision in a collective measurement

Quantum Physics 2015-11-30 v3

Abstract

We explore the role of collective measurements\textit{collective measurements} on precision in estimation of a single parameter. Collective measurements are represented by observables which commute with all permutations of the probe particles. We show that with this constraint, quantum bits(qubits) outperform classical bits(non-superposable bits) in optimizing precision. Specifically, we prove that while precision in a collective measurement is loosely bounded by O(1N)O\left(\frac{1}{N}\right) for NN classical bits, using qubits it is tightly bounded by O(1N2)O\left(\frac{1}{N^2}\right). This bound is consistent with quantum metrology protocols with the collective measurement requiring an entangled probe state to saturate. Finally, we construct a canonical measurement protocol that saturates this bound.

Keywords

Cite

@article{arxiv.1411.5090,
  title  = {Quantum enhanced precision in a collective measurement},
  author = {H. M. Bharath and Saikat Ghosh},
  journal= {arXiv preprint arXiv:1411.5090},
  year   = {2015}
}

Comments

16 Pages, 1 Figure, 2 Tables

R2 v1 2026-06-22T07:03:59.533Z