An optical quantum computer, powerful enough to solve problems so far intractable using conventional digital logic, requires a large number of entangled photons. At present, entangled-light sources are optically driven with lasers, which are impractical for quantum computing owing to the bulk and complexity of the optics required for large-scale applications. Parametric down-conversion is the most widely used source of entangled light, and has been used to implement non-destructive quantum logic gates. However, these sources are Poissonian and probabilistically emit zero or multiple entangled photon pairs in most cycles, fundamentally limiting the success probability of quantum computational operations. These complications can be overcome b...
The generation of entangled photon pairs is a fundamental cornerstone of quantum optics, and an esse...
Entangled photons are essential for scalable optical quantum communication and processing. We demons...
Quantum teleportation can relay quantum information, and enable near-deterministic quantum circuits....
Existing sources of entangled photons require a laser excitation, imposing a practical limit on thei...
We demonstrate electrically-driven entangled photon generation using a semiconductor quantum dot emb...
We demonstrate electrically-driven entangled photon generation using a semiconductor quantum dot emb...
Electrically-driven entangled-photon generation is demonstrated for the first time using a single In...
Electrically-driven entangled photon generation is demonstrated for the first time using a single se...
Sources of entangled pairs of photons can be used for encoding signals in quantum-encrypted communic...
Quantum information technology promises to offer incredible advantages over current digital systems,...
Teleportation of optical qubits can enable reliable logic operations in massively parallel quantum c...
Semiconductor quantum dots (QDs) are a promising source of quantum light, combining sub-Poissonian p...
Teleportation of optical qubits can enable reliable logic operations in massively parallel quantum c...
We demonstrate for the first time teleportation mediated by electrically generated entangled photon ...
We demonstrate for the first time teleportation mediated by electrically generated entangled photon ...
The generation of entangled photon pairs is a fundamental cornerstone of quantum optics, and an esse...
Entangled photons are essential for scalable optical quantum communication and processing. We demons...
Quantum teleportation can relay quantum information, and enable near-deterministic quantum circuits....
Existing sources of entangled photons require a laser excitation, imposing a practical limit on thei...
We demonstrate electrically-driven entangled photon generation using a semiconductor quantum dot emb...
We demonstrate electrically-driven entangled photon generation using a semiconductor quantum dot emb...
Electrically-driven entangled-photon generation is demonstrated for the first time using a single In...
Electrically-driven entangled photon generation is demonstrated for the first time using a single se...
Sources of entangled pairs of photons can be used for encoding signals in quantum-encrypted communic...
Quantum information technology promises to offer incredible advantages over current digital systems,...
Teleportation of optical qubits can enable reliable logic operations in massively parallel quantum c...
Semiconductor quantum dots (QDs) are a promising source of quantum light, combining sub-Poissonian p...
Teleportation of optical qubits can enable reliable logic operations in massively parallel quantum c...
We demonstrate for the first time teleportation mediated by electrically generated entangled photon ...
We demonstrate for the first time teleportation mediated by electrically generated entangled photon ...
The generation of entangled photon pairs is a fundamental cornerstone of quantum optics, and an esse...
Entangled photons are essential for scalable optical quantum communication and processing. We demons...
Quantum teleportation can relay quantum information, and enable near-deterministic quantum circuits....