Entanglement is essential to many quantum information applications, but it is easily destroyed by quantum decoherence arising from interaction with the environment. We report the first experimental demonstration of an entanglement-based protocol that is resilient to loss and noise which destroy entanglement. Specifically, despite channel noise 8.3 dB beyond the threshold for entanglement breaking, eavesdropping-immune communication is achieved between Alice and Bob when an entangled source is used, but no such immunity is obtainable when their source is classical. The results prove that entanglement can be utilized beneficially in lossy and noisy situations, i.e., in practical scenarios.United States. Office of Naval Research (Basic Researc...
Noise can be considered the natural enemy of quantum information. An often implied benefit of high-d...
We give a proof that entanglement purification, even with noisy apparatus, is sufficient to disenta...
We study the stability under quantum noise effects of the quantum privacy amplification protocol for...
In the last years, different procedures have been developed in order to recover entanglement after p...
A recent study conducted at the Massachusetts Institute of Technology (MIT) by a team of researchers...
Entanglement underpins a variety of quantum-enhanced communication, sensing, and computing capabilit...
Quantum systems are fragile. The decoherence effect, which is caused by interactions between quantum...
The benefits of entanglement can outlast entanglement itself. In quantum illumination, entanglement ...
Entanglement distillation is an indispensable ingredient in extended quantum communication networks....
Noise can be considered the natural enemy of quantum information. An often implied benefit of high-d...
The benefits of entanglement can outlast entanglement itself. In quantum illumination, entanglement ...
We describe two quantum channels that individually cannot send any classical information without som...
We study the stability under quantum noise effects of the quantum privacy amplification protocol for...
The benefits of entanglement can outlast entanglement itself. In quantum illumination, entanglement ...
The benefits of entanglement can outlast entanglement itself. In quantum illumination, entanglement ...
Noise can be considered the natural enemy of quantum information. An often implied benefit of high-d...
We give a proof that entanglement purification, even with noisy apparatus, is sufficient to disenta...
We study the stability under quantum noise effects of the quantum privacy amplification protocol for...
In the last years, different procedures have been developed in order to recover entanglement after p...
A recent study conducted at the Massachusetts Institute of Technology (MIT) by a team of researchers...
Entanglement underpins a variety of quantum-enhanced communication, sensing, and computing capabilit...
Quantum systems are fragile. The decoherence effect, which is caused by interactions between quantum...
The benefits of entanglement can outlast entanglement itself. In quantum illumination, entanglement ...
Entanglement distillation is an indispensable ingredient in extended quantum communication networks....
Noise can be considered the natural enemy of quantum information. An often implied benefit of high-d...
The benefits of entanglement can outlast entanglement itself. In quantum illumination, entanglement ...
We describe two quantum channels that individually cannot send any classical information without som...
We study the stability under quantum noise effects of the quantum privacy amplification protocol for...
The benefits of entanglement can outlast entanglement itself. In quantum illumination, entanglement ...
The benefits of entanglement can outlast entanglement itself. In quantum illumination, entanglement ...
Noise can be considered the natural enemy of quantum information. An often implied benefit of high-d...
We give a proof that entanglement purification, even with noisy apparatus, is sufficient to disenta...
We study the stability under quantum noise effects of the quantum privacy amplification protocol for...