We provide general sufficient conditions for the efficient classical simulation of quantum-optics experiments that involve inputting states to a quantum process and making measurements at the output. The first condition is based on the negativity of phase-space quasiprobability distributions (PQDs) of the output state of the process and the output measurements; the second one is based on the negativity of PQDs of the input states, the output measurements, and the transition function associated with the process. We show that these conditions provide useful practical tools for investigating the effects of imperfections in implementations of boson sampling. In particular, we apply our formalism to boson-sampling experiments that use single-pho...
We develop an alternative boson sampling model operating on single-photon states followed by linear ...
Boson Sampling represents a promising approach to obtain an evidence of the supremacy of quantum sys...
Boson sampling is a specific quantum computation, which is likely hard to implement efficiently on a...
We provide general sufficient conditions for the efficient classical simulation of quantum-optics ex...
Boson Sampling is the problem of sampling from the same distribution as indistinguishable single pho...
Boson sampling, a computational problem conjectured to be hard to simulate on a classical machine, i...
As a promising candidate for exhibiting quantum computational supremacy, Gaussian boson sampling (GB...
Boson sampling is the problem of sampling from the same distribution as indistinguishable single pho...
Boson sampling, a computational problem conjectured to be hard to simulate on a classical machine, i...
Boson sampling is a fundamentally and practically important task that can be used to demonstrate qua...
A Boson sampling device is believed to be a specific quantum computer which is more efficient than i...
Linear optics quantum computing is a promising approach to implementing scalable quantum computation...
A boson sampling device is a specialized quantum computer that solves a problem that is strongly bel...
Poster CommunicationInternational audienceBosonSampling is a problem where a quantum computer offers...
When the problem of boson sampling was first proposed, it was assumed that little or no photon colli...
We develop an alternative boson sampling model operating on single-photon states followed by linear ...
Boson Sampling represents a promising approach to obtain an evidence of the supremacy of quantum sys...
Boson sampling is a specific quantum computation, which is likely hard to implement efficiently on a...
We provide general sufficient conditions for the efficient classical simulation of quantum-optics ex...
Boson Sampling is the problem of sampling from the same distribution as indistinguishable single pho...
Boson sampling, a computational problem conjectured to be hard to simulate on a classical machine, i...
As a promising candidate for exhibiting quantum computational supremacy, Gaussian boson sampling (GB...
Boson sampling is the problem of sampling from the same distribution as indistinguishable single pho...
Boson sampling, a computational problem conjectured to be hard to simulate on a classical machine, i...
Boson sampling is a fundamentally and practically important task that can be used to demonstrate qua...
A Boson sampling device is believed to be a specific quantum computer which is more efficient than i...
Linear optics quantum computing is a promising approach to implementing scalable quantum computation...
A boson sampling device is a specialized quantum computer that solves a problem that is strongly bel...
Poster CommunicationInternational audienceBosonSampling is a problem where a quantum computer offers...
When the problem of boson sampling was first proposed, it was assumed that little or no photon colli...
We develop an alternative boson sampling model operating on single-photon states followed by linear ...
Boson Sampling represents a promising approach to obtain an evidence of the supremacy of quantum sys...
Boson sampling is a specific quantum computation, which is likely hard to implement efficiently on a...