English

Universality of Generalized Bunching and Efficient Assessment of Boson Sampling

Quantum Physics 2016-03-30 v7 Other Condensed Matter Statistical Mechanics

Abstract

It is found that identical bosons (fermions) show generalized bunching (antibunching) property in linear networks: The absolute maximum (minimum) of probability that all NN input particles are detected in a subset of K\mathcal{K} output modes of any nontrivial linear MM-mode network is attained \textit{only} by completely indistinguishable bosons (fermions). For fermions K\mathcal{K} is arbitrary, for bosons it is either (ii) arbitrary for only classically correlated bosons or (iiii) satisfies KN\mathcal{K}\ge N (or K=1\mathcal{K}=1) for arbitrary input states of NN particles. The generalized bunching allows to certify in a \textit{polynomial} in NN number of runs that a physical device realizing Boson Sampling with \textit{an arbitrary} network operates in the regime of full quantum coherence compatible \textit{only} with completely indistinguishable bosons. The protocol needs \textit{only polynomial} classical computations for the standard Boson Sampling, whereas an \textit{analytic formula} is available for the scattershot version.

Keywords

Cite

@article{arxiv.1509.01561,
  title  = {Universality of Generalized Bunching and Efficient Assessment of Boson Sampling},
  author = {V. S. Shchesnovich},
  journal= {arXiv preprint arXiv:1509.01561},
  year   = {2016}
}

Comments

Accepted to Physical Review Letters, 5 pages, with 9 of the supplementing appendix, 2 figures