Quantum networks hold the promise for revolutionary advances in information processing with quantum resources distributed over remote locations via quantum-repeater architectures. Quantum networks are composed of nodes for storing and processing quantum states, and of channels for transmitting states between them. The scalability of such networks relies critically on the ability to carry out conditional operations on states stored in separated quantum memories. Here, we report the first implementation of such conditional control of two atomic memories, located in distinct apparatuses, which results in a 28-fold increase of the probability of simultaneously obtaining a pair of single photons, relative to the case without conditional control....
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
We demonstrated entanglement distribution between two remote quantum nodes located 3 meters apart. T...
Quantum networks hold the promise for revolutionary advances in information processing with quantum ...
In the quantum repeater scheme, entanglement is distributed by swapping through a chain of entangled...
Quantum networks hold the promise for revolutionary advances in information processing with entangle...
Quantum networks hold the promise for revolutionary advances in information processing with entangle...
Quantum networks hold the promise for revolutionary advances in information processing with entangle...
We report the observation of heralded entanglement between remote atomic ensembles. The detection of...
We report the observation of heralded entanglement between remote atomic ensembles. The detection of...
A critical requirement for diverse applications in quantum information science is the capability to ...
We observe quantum, Hong-Ou-Mandel, interference of fields produced by two remote atomic memories. H...
Entanglement is generated by path-erasing detection of single photon emitted indistinguishably by tw...
Quantum information science involves the storage, manipulation and communication of information enco...
We report entanglement generation in atomic quantum memories via deterministic mapping of photonic e...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
We demonstrated entanglement distribution between two remote quantum nodes located 3 meters apart. T...
Quantum networks hold the promise for revolutionary advances in information processing with quantum ...
In the quantum repeater scheme, entanglement is distributed by swapping through a chain of entangled...
Quantum networks hold the promise for revolutionary advances in information processing with entangle...
Quantum networks hold the promise for revolutionary advances in information processing with entangle...
Quantum networks hold the promise for revolutionary advances in information processing with entangle...
We report the observation of heralded entanglement between remote atomic ensembles. The detection of...
We report the observation of heralded entanglement between remote atomic ensembles. The detection of...
A critical requirement for diverse applications in quantum information science is the capability to ...
We observe quantum, Hong-Ou-Mandel, interference of fields produced by two remote atomic memories. H...
Entanglement is generated by path-erasing detection of single photon emitted indistinguishably by tw...
Quantum information science involves the storage, manipulation and communication of information enco...
We report entanglement generation in atomic quantum memories via deterministic mapping of photonic e...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
We demonstrated entanglement distribution between two remote quantum nodes located 3 meters apart. T...