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Quadratic speedup for simulating Gaussian boson sampling

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arxiv 2010.15595 v4 pith:MBAQHAM4 submitted 2020-10-29 quant-ph

Quadratic speedup for simulating Gaussian boson sampling

classification quant-ph
keywords algorithmsamplinggaussianbosonhafnianloopnumberphoton
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We introduce an algorithm for the classical simulation of Gaussian boson sampling that is quadratically faster than previously known methods. The complexity of the algorithm is exponential in the number of photon pairs detected, not the number of photons, and is directly proportional to the time required to calculate a probability amplitude for a pure Gaussian state. The main innovation is to use auxiliary conditioning variables to reduce the problem of sampling to computing pure-state probability amplitudes, for which the most computationally-expensive step is calculating a loop hafnian. We implement and benchmark an improved loop hafnian algorithm and show that it can be used to compute pure-state probabilities, the dominant step in the sampling algorithm, of up to 50-photon events in a single workstation, i.e., without the need of a supercomputer.

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