Practical quantum communication between remote quantum memories rely on single photons at telecom wavelengths. Although spin-photon entanglement has been demonstrated in atomic and solid-state qubit systems, the produced single photons at short wavelengths and with polarization encoding are not suitable for long-distance communication, because they suffer from high propagation loss and depolarization in optical fibres. Establishing entanglement between remote quantum nodes would further require the photons generated from separate nodes to be indistinguishable. Here, we report the observation of correlations between a quantum-dot spin and a telecom single photon across a 2-km fibre channel based on time-bin encoding and background-free frequ...
Quantum networks can interconnect remote quantum information processors, allowing interaction betwee...
Long-distance quantum communication relies on the ability to efficiently generate and prepare single...
Quantum teleportation1 is a cornerstone of quantum information science due to its essential role in ...
Practical quantum communication between remote quantum memories rely on single photons at telecom wa...
Practical quantum communication between remote quantum memories rely on single photons at telecom wa...
This work was supported by the JST through its ImPACT Program, NICT, NSF CCR-08 29694, NIST 60NANB9D...
Long-distance quantum teleportation and quantum repeater technologies require entanglement between a...
We report on the realization and verification of quantum entanglement between a nitrogen-vacancy ele...
Long-distance quantum teleportation and quantum repeater technologies require entanglement between a...
We report on the realization and verification of quantum entanglement between a nitrogen-vacancy ele...
We report on the realization and verification of quantum entanglement between a nitrogen-vacancy ele...
We report on the realization and verification of quantum entanglement between a nitrogen-vacancy ele...
Quantum networks can interconnect remote quantum information processors, allowing interaction betwee...
In a quantum network involving multiple communicating parties, an important goal is to establish hig...
Realization of long-distance quantum communication through the quantum repeater network requires a c...
Quantum networks can interconnect remote quantum information processors, allowing interaction betwee...
Long-distance quantum communication relies on the ability to efficiently generate and prepare single...
Quantum teleportation1 is a cornerstone of quantum information science due to its essential role in ...
Practical quantum communication between remote quantum memories rely on single photons at telecom wa...
Practical quantum communication between remote quantum memories rely on single photons at telecom wa...
This work was supported by the JST through its ImPACT Program, NICT, NSF CCR-08 29694, NIST 60NANB9D...
Long-distance quantum teleportation and quantum repeater technologies require entanglement between a...
We report on the realization and verification of quantum entanglement between a nitrogen-vacancy ele...
Long-distance quantum teleportation and quantum repeater technologies require entanglement between a...
We report on the realization and verification of quantum entanglement between a nitrogen-vacancy ele...
We report on the realization and verification of quantum entanglement between a nitrogen-vacancy ele...
We report on the realization and verification of quantum entanglement between a nitrogen-vacancy ele...
Quantum networks can interconnect remote quantum information processors, allowing interaction betwee...
In a quantum network involving multiple communicating parties, an important goal is to establish hig...
Realization of long-distance quantum communication through the quantum repeater network requires a c...
Quantum networks can interconnect remote quantum information processors, allowing interaction betwee...
Long-distance quantum communication relies on the ability to efficiently generate and prepare single...
Quantum teleportation1 is a cornerstone of quantum information science due to its essential role in ...