We identify a broad class of physical processes in an optical quantum circuit that can be efficiently simulated on a classical computer: this class includes unitary transformations, amplification, noise, and measurements. This simulatability result places powerful constraints on the capability to realize exponential quantum speedups as well as on inducing an optical nonlinear transformation via linear optics, photodetection-based measurement, and classical feedforward of measurement results, optimal cloning, and a wide range of other processes.4 page(s
Quantum-mechanical phenomena are playing an increasing role in information processing as transistor ...
We investigate the boundary between classical and quantum computational power. This work consists of...
Quantum computation is a subject born out of the combination between physics and computer science. I...
We identify a broad class of physical processes in an optical quantum circuit that can be efficientl...
We give new evidence that quantum computers—moreover, rudimentary quantum computers built entirely o...
We obtain sufficient conditions for the efficient simulation of a continuous variable quantum algori...
Recently, classical optics based systems to emulate quantum information processing have been propose...
The purpose of this paper is to show how a class of classical linear stochastic systems can be physi...
URL to conference site, shows it's an accepted paperWe give new evidence that quantum computers---mo...
Quantum computing has attracted much attention in recent decades, since it is believed to solve cert...
The purpose of this paper is to show how classical linear stochastic systems can be physically imple...
We obtain sufficient conditions for the efficient simulation of a continuous variable quantum algori...
We obtain sufficient conditions for the efficient simulation of a continuous variable quantum algori...
Quantum information processing offers fundamental improvements over classical information processing...
Quantum-mechanical phenomena are playing an increasing role in information processing as transistor ...
Quantum-mechanical phenomena are playing an increasing role in information processing as transistor ...
We investigate the boundary between classical and quantum computational power. This work consists of...
Quantum computation is a subject born out of the combination between physics and computer science. I...
We identify a broad class of physical processes in an optical quantum circuit that can be efficientl...
We give new evidence that quantum computers—moreover, rudimentary quantum computers built entirely o...
We obtain sufficient conditions for the efficient simulation of a continuous variable quantum algori...
Recently, classical optics based systems to emulate quantum information processing have been propose...
The purpose of this paper is to show how a class of classical linear stochastic systems can be physi...
URL to conference site, shows it's an accepted paperWe give new evidence that quantum computers---mo...
Quantum computing has attracted much attention in recent decades, since it is believed to solve cert...
The purpose of this paper is to show how classical linear stochastic systems can be physically imple...
We obtain sufficient conditions for the efficient simulation of a continuous variable quantum algori...
We obtain sufficient conditions for the efficient simulation of a continuous variable quantum algori...
Quantum information processing offers fundamental improvements over classical information processing...
Quantum-mechanical phenomena are playing an increasing role in information processing as transistor ...
Quantum-mechanical phenomena are playing an increasing role in information processing as transistor ...
We investigate the boundary between classical and quantum computational power. This work consists of...
Quantum computation is a subject born out of the combination between physics and computer science. I...