Characterizing the computational advantage from noisy intermediate-scale quantum (NISQ) devices is an important task from theoretical and practical perspectives. Here, we numerically investigate the computational power of NISQ devices focusing on boson sampling, one of the well-known promising problems which can exhibit quantum supremacy. We study hardness of lossy boson sampling using matrix product operator (MPO) simulation to address the effect of photon loss on classical simulability using MPO entanglement entropy (EE), which characterizes a running time of an MPO algorithm. An advantage of MPO simulation over other classical algorithms proposed to date is that its simulation accuracy can be efficiently controlled by increasing an MPO's...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Computers based quantum logic are believed to solve problems faster and more efficiently than comput...
Scientists in quantum technology aspire to quantum advantage: a computational result unattainable wi...
Understanding the computational power of noisy intermediate-scale quantum (NISQ) devices is of both ...
Simulating the evolution of non-interacting bosons through a linear transformation acting on the sys...
As a promising candidate for exhibiting quantum computational supremacy, Gaussian boson sampling (GB...
© 2017 by the Authors. There is a large body of evidence for the potential of greater computational ...
Boson sampling, a computational problem conjectured to be hard to simulate on a classical machine, i...
Linear optics quantum computing is a promising approach to implementing scalable quantum computation...
Boson sampling represents a promising approach to obtain evidence of the supremacy of quantum system...
It remains questionable whether all physically realizable computational model can be simulated by cu...
Photonics is a promising platform for demonstrating a quantum computational advantage (QCA) by outpe...
Boson-sampling is a highly simplified, but non-universal, approach to implementing optical quantum c...
Boson Sampling is the problem of sampling from the same distribution as indistinguishable single pho...
A growing cohort of experimental linear photonic networks implementing Gaussian boson sampling (GBS)...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Computers based quantum logic are believed to solve problems faster and more efficiently than comput...
Scientists in quantum technology aspire to quantum advantage: a computational result unattainable wi...
Understanding the computational power of noisy intermediate-scale quantum (NISQ) devices is of both ...
Simulating the evolution of non-interacting bosons through a linear transformation acting on the sys...
As a promising candidate for exhibiting quantum computational supremacy, Gaussian boson sampling (GB...
© 2017 by the Authors. There is a large body of evidence for the potential of greater computational ...
Boson sampling, a computational problem conjectured to be hard to simulate on a classical machine, i...
Linear optics quantum computing is a promising approach to implementing scalable quantum computation...
Boson sampling represents a promising approach to obtain evidence of the supremacy of quantum system...
It remains questionable whether all physically realizable computational model can be simulated by cu...
Photonics is a promising platform for demonstrating a quantum computational advantage (QCA) by outpe...
Boson-sampling is a highly simplified, but non-universal, approach to implementing optical quantum c...
Boson Sampling is the problem of sampling from the same distribution as indistinguishable single pho...
A growing cohort of experimental linear photonic networks implementing Gaussian boson sampling (GBS)...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Computers based quantum logic are believed to solve problems faster and more efficiently than comput...
Scientists in quantum technology aspire to quantum advantage: a computational result unattainable wi...