International audienceA quantum repeater node is presented based on trapped ions that act as single photon emitters, quantum memories and an elementary quantum processor. The node's ability to establish entanglement across two 25 km-long optical fibers independently, then to swap that entanglement efficiently to extend it over both fibers, is demonstrated. The resultant entanglement is established between telecom-wavelength photons at either end of the 50 km channel. The system improvements to allow for repeater-node chains to establish stored entanglement over 800 km at Hertz rates are identified, revealing a near-term path to distributed networks of entangled sensors, atomic clocks and quantum processors
The realization of a long-distance, distributed quantum network based on quantum memory nodes that a...
Elementary building blocks for quantum repeaters based on fiber channels and memory stations are ana...
Long-distance quantum communication via distant pairs of entangled quantum bits (qubits) is the firs...
International audienceA quantum repeater node is presented based on trapped ions that act as single ...
International audienceA quantum repeater node is presented based on trapped ions that act as single ...
A quantum repeater node is presented based on trapped ions that act as single photon emitters, quant...
The quantum internet, when finally deployed, will enable a plethora of new applications such as theo...
When shared between remote locations, entanglement opens up fundamentally new capabilities for scien...
Quantum repeaters provide an efficient solution to distribute Bell pairs over arbitrarily long dista...
Trapped ions form an advanced technology platform for quantum information processing with long qubit...
Realization of long-distance quantum communication through the quantum repeater network requires a c...
Realization of a globe-spanning quantum network is a current worldwide goal, where near and long ter...
Realization of a globe-spanning quantum network is a current worldwide goal, where near and long ter...
Elementary building blocks for quantum repeaters based on fiber channels and memory stations are ana...
The distribution of quantum states over long distances is limited by photon loss. Straightforward am...
The realization of a long-distance, distributed quantum network based on quantum memory nodes that a...
Elementary building blocks for quantum repeaters based on fiber channels and memory stations are ana...
Long-distance quantum communication via distant pairs of entangled quantum bits (qubits) is the firs...
International audienceA quantum repeater node is presented based on trapped ions that act as single ...
International audienceA quantum repeater node is presented based on trapped ions that act as single ...
A quantum repeater node is presented based on trapped ions that act as single photon emitters, quant...
The quantum internet, when finally deployed, will enable a plethora of new applications such as theo...
When shared between remote locations, entanglement opens up fundamentally new capabilities for scien...
Quantum repeaters provide an efficient solution to distribute Bell pairs over arbitrarily long dista...
Trapped ions form an advanced technology platform for quantum information processing with long qubit...
Realization of long-distance quantum communication through the quantum repeater network requires a c...
Realization of a globe-spanning quantum network is a current worldwide goal, where near and long ter...
Realization of a globe-spanning quantum network is a current worldwide goal, where near and long ter...
Elementary building blocks for quantum repeaters based on fiber channels and memory stations are ana...
The distribution of quantum states over long distances is limited by photon loss. Straightforward am...
The realization of a long-distance, distributed quantum network based on quantum memory nodes that a...
Elementary building blocks for quantum repeaters based on fiber channels and memory stations are ana...
Long-distance quantum communication via distant pairs of entangled quantum bits (qubits) is the firs...