English

Classical simulability of noisy boson sampling

Quantum Physics 2019-04-02 v2 Statistical Mechanics Optics

Abstract

Quantum mechanics promises computational powers beyond the reach of classical computers. Current technology is on the brink of an experimental demonstration of the superior power of quantum computation compared to classical devices. For such a demonstration to be meaningful, experimental noise must not affect the computational power of the device; this occurs when a classical algorithm can use the noise to simulate the quantum system. In this work, we demonstrate an algorithm which simulates boson sampling, a quantum advantage demonstration based on many-body quantum interference of indistinguishable bosons, in the presence of optical loss. Finding the level of noise where this approximation becomes efficient lets us map out the maximum level of imperfections at which it is still possible to demonstrate a quantum advantage. We show that current photonic technology falls short of this benchmark. These results call into question the suitability of boson sampling as a quantum advantage demonstration.

Keywords

Cite

@article{arxiv.1809.01953,
  title  = {Classical simulability of noisy boson sampling},
  author = {Jelmer Renema and Valery Shchesnovich and Raul Garcia-Patron},
  journal= {arXiv preprint arXiv:1809.01953},
  year   = {2019}
}

Comments

Revised manuscript + added sup mat

R2 v1 2026-06-23T03:56:33.924Z