Boson sampling has emerged as a promising avenue towards postclassical optical quantum computation, and numerous elementary demonstrations have recently been performed. Spontaneous parametric down-conversion (SPDC) is the mainstay for single-photon state preparation, the technique employed in most optical quantum information processing implementations to date. Here we present a simple architecture for boson sampling based on multiplexed SPDC sources and demonstrate that the architecture is limited only by the postselection detection efficiency assuming that other errors, such as spectral impurity, dark counts, and interferometric instability, are negligible. For any given number of input photons, there exists a minimum detector efficiency t...
Boson Sampling is a computational paradigm representing one of the most viable and pursued approache...
A major challenge for postclassical boson sampling experiments is the need for a large number of cou...
Quantum computing experiments are moving into a new realm of increasing size and complexity, with th...
Boson sampling has emerged as a promising avenue towards postclassical optical quantum computation, ...
An important step for photonic quantum technologies is the demonstration of a quantum advantage thro...
A boson-sampling device is a quantum machine expected to perform tasks intractable for a classical c...
This work was supported by the National Natural Science Foundation of China, the Chinese Academy of ...
A universal quantum computer of moderate scale is not available yet, however intermediate models of ...
This work was supported by the National Natural Science Foundation of China, the Chinese Academy of ...
© 2015 American Physical Society. Boson sampling is a simple model for nonuniversal linear optics qu...
Boson sampling is a computational problem that has recently been proposed as a candidate to obtain a...
© 2014 American Physical Society. We present an architecture for arbitrarily scalable boson sampling...
Boson sampling is a model of non-universal quantum computations. Originally, it was proposed as a me...
Boson sampling is a computational task strongly believed to be hard for classical computers, but eff...
This work was supported by the National Natural Science Foundation of China, the Chinese Academy of ...
Boson Sampling is a computational paradigm representing one of the most viable and pursued approache...
A major challenge for postclassical boson sampling experiments is the need for a large number of cou...
Quantum computing experiments are moving into a new realm of increasing size and complexity, with th...
Boson sampling has emerged as a promising avenue towards postclassical optical quantum computation, ...
An important step for photonic quantum technologies is the demonstration of a quantum advantage thro...
A boson-sampling device is a quantum machine expected to perform tasks intractable for a classical c...
This work was supported by the National Natural Science Foundation of China, the Chinese Academy of ...
A universal quantum computer of moderate scale is not available yet, however intermediate models of ...
This work was supported by the National Natural Science Foundation of China, the Chinese Academy of ...
© 2015 American Physical Society. Boson sampling is a simple model for nonuniversal linear optics qu...
Boson sampling is a computational problem that has recently been proposed as a candidate to obtain a...
© 2014 American Physical Society. We present an architecture for arbitrarily scalable boson sampling...
Boson sampling is a model of non-universal quantum computations. Originally, it was proposed as a me...
Boson sampling is a computational task strongly believed to be hard for classical computers, but eff...
This work was supported by the National Natural Science Foundation of China, the Chinese Academy of ...
Boson Sampling is a computational paradigm representing one of the most viable and pursued approache...
A major challenge for postclassical boson sampling experiments is the need for a large number of cou...
Quantum computing experiments are moving into a new realm of increasing size and complexity, with th...