Quantum networks are essential for realising distributed quantum computation and quantum communication. Entangled photons are a key resource, with applications such as quantum key distribution, quantum relays, and quantum repeaters. All components integrated in a quantum network must be synchronised and therefore comply with a certain clock frequency. In quantum key distribution, the most mature technology, clock rates have reached and exceeded 1GHz. Here we show the first electrically pulsed sub-Poissonian entangled photon source compatible with existing fiber networks operating at this clock rate. The entangled LED is based on InAs/InP quantum dots emitting in the main telecom window, with a multi-photon probability of less than 10% per e...
Semiconductor quantum dots (QDs) are well established as sub-Poissonian sources of entangled photon ...
In a quantum network involving multiple communicating parties, an important goal is to establish hig...
Top-performance sources of photonic entanglement are an indispensable resource for many applications...
Abstract: Quantum networks are essential for realising distributed quantum computation and quantum...
Entangled light emitting diodes based on semiconductor quantum dots are promising devices for securi...
Semiconductor quantum dots (QDs) are a promising source of quantum light, combining sub-Poissonian p...
Teleportation is a fundamental concept of quantum mechanics with an important application in extendi...
Entanglement is a universal resource in quantum networks, yet entangled photon sources are typically...
A practical way to link separate nodes in quantum networks is to send photons over the standard tele...
We demonstrate the feasibility of a network-oriented Quantum Key Distribution (QKD) from affordable ...
Entangled light sources are considered as core technology for multiple quantum network architectures...
Quantum information technology promises to offer incredible advantages over current digital systems,...
Quantum cryptography allows confidential information to be communicated between two parties, with se...
Quantum networks can interconnect remote quantum information processors, allowing interaction betwee...
<p>Quantum cryptography with entangled photon pairs can be more powerful than protocols based onsing...
Semiconductor quantum dots (QDs) are well established as sub-Poissonian sources of entangled photon ...
In a quantum network involving multiple communicating parties, an important goal is to establish hig...
Top-performance sources of photonic entanglement are an indispensable resource for many applications...
Abstract: Quantum networks are essential for realising distributed quantum computation and quantum...
Entangled light emitting diodes based on semiconductor quantum dots are promising devices for securi...
Semiconductor quantum dots (QDs) are a promising source of quantum light, combining sub-Poissonian p...
Teleportation is a fundamental concept of quantum mechanics with an important application in extendi...
Entanglement is a universal resource in quantum networks, yet entangled photon sources are typically...
A practical way to link separate nodes in quantum networks is to send photons over the standard tele...
We demonstrate the feasibility of a network-oriented Quantum Key Distribution (QKD) from affordable ...
Entangled light sources are considered as core technology for multiple quantum network architectures...
Quantum information technology promises to offer incredible advantages over current digital systems,...
Quantum cryptography allows confidential information to be communicated between two parties, with se...
Quantum networks can interconnect remote quantum information processors, allowing interaction betwee...
<p>Quantum cryptography with entangled photon pairs can be more powerful than protocols based onsing...
Semiconductor quantum dots (QDs) are well established as sub-Poissonian sources of entangled photon ...
In a quantum network involving multiple communicating parties, an important goal is to establish hig...
Top-performance sources of photonic entanglement are an indispensable resource for many applications...