URL to conference site, shows it's an accepted paperWe give new evidence that quantum computers---moreover, rudimentary quantum computers built entirely out of linear-optical elements---cannot be efficiently simulated by classical computers. In particular, we define a model of computation in which identical photons are generated, sent through a linear-optical network, then nonadaptively measured to count the number of photons in each mode. This model is not known or believed to be universal for quantum computation, and indeed, we discuss the prospects for realizing the model using current technology. On the other hand, we prove that the model is able to solve sampling problems and search problems that are classically intractable under plaus...
In order to find the outcome probabilities of quantum mechanical systems like the optical networks u...
In order to find the outcome probabilities of quantum mechanical systems like the optical networks u...
Linear optics with photon counting is a prominent candidate for practical quantum computing. The pro...
We give new evidence that quantum computers—moreover, rudimentary quantum computers built entirely o...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Quantum computers promise to solve certain problems that are forever intractable to classical comput...
Linear optics quantum computing (LOQC) is a leading candidate for the implementation of large scale ...
Simulating the evolution of non-interacting bosons through a linear transformation acting on the sys...
Considering the problem of sampling from the output photon-counting probability distribution of a li...
Linear optics quantum computing is a promising approach to implementing scalable quantum computation...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Quantum computational supremacy arguments, which describe a way for a quantum computer to perform a ...
Boson sampling is a fundamentally and practically important task that can be used to demonstrate qua...
In order to find the outcome probabilities of quantum mechanical systems like the optical networks u...
In order to find the outcome probabilities of quantum mechanical systems like the optical networks u...
In order to find the outcome probabilities of quantum mechanical systems like the optical networks u...
In order to find the outcome probabilities of quantum mechanical systems like the optical networks u...
Linear optics with photon counting is a prominent candidate for practical quantum computing. The pro...
We give new evidence that quantum computers—moreover, rudimentary quantum computers built entirely o...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Quantum computers promise to solve certain problems that are forever intractable to classical comput...
Linear optics quantum computing (LOQC) is a leading candidate for the implementation of large scale ...
Simulating the evolution of non-interacting bosons through a linear transformation acting on the sys...
Considering the problem of sampling from the output photon-counting probability distribution of a li...
Linear optics quantum computing is a promising approach to implementing scalable quantum computation...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Quantum computational supremacy arguments, which describe a way for a quantum computer to perform a ...
Boson sampling is a fundamentally and practically important task that can be used to demonstrate qua...
In order to find the outcome probabilities of quantum mechanical systems like the optical networks u...
In order to find the outcome probabilities of quantum mechanical systems like the optical networks u...
In order to find the outcome probabilities of quantum mechanical systems like the optical networks u...
In order to find the outcome probabilities of quantum mechanical systems like the optical networks u...
Linear optics with photon counting is a prominent candidate for practical quantum computing. The pro...