International audienceWe report a teleportation experiment involving narrowband entangled photons at 1560 nm and qubit photons at 795 nm emulated by faint laser pulses. A nonlinear difference frequency generation stage converts the 795 nm photons to 1560 nm in order to enable interference with one photon out of the pairs, i.e., at the same wavelength. The spectral bandwidth of all involved photons is of about 25 MHz, which is close to the emission bandwidth of emissive quantum memory devices, notably those based on ensembles of cold atoms and rare earth ions. This opens the route towards the realization of hybrid quantum nodes, i.e., combining quantum memories and entanglement-based quantum relays exploiting either a synchronized (pulsed) o...
International audienceWe report on a two-photon interference experiment in a quantum relay configura...
The ability to control the optical frequency of quantum state carriers (i.e. photons) is an importan...
Using entangled pairs of photons from a frequency comb and wide-band frequency-resolved homodyne det...
International audienceWe report a teleportation experiment involving narrowband entangled photons at...
International audienceWe report a telecom teleportation experiment involving narrowband entangled ph...
We present a quantum teleportation experiment in the quantum relay configuration using the installed...
A practical way to link separate nodes in quantum networks is to send photons over the standard tele...
Long-distance quantum teleportation and quantum repeater technologies require entanglement between a...
The development of quantum relays for long-haul and attack-proof quantum communication networks oper...
Teleportation is a fundamental concept of quantum mechanics with an important application in extendi...
Quantum cryptography allows confidential information to be communicated between two parties, with se...
Quantum teleportation is essential for many quantum information technologies, including long-distanc...
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...
Entanglement drives nearly all proposed quantum information technologies. The suppression of the unc...
International audienceWe report on a two-photon interference experiment in a quantum relay configura...
The ability to control the optical frequency of quantum state carriers (i.e. photons) is an importan...
Using entangled pairs of photons from a frequency comb and wide-band frequency-resolved homodyne det...
International audienceWe report a teleportation experiment involving narrowband entangled photons at...
International audienceWe report a telecom teleportation experiment involving narrowband entangled ph...
We present a quantum teleportation experiment in the quantum relay configuration using the installed...
A practical way to link separate nodes in quantum networks is to send photons over the standard tele...
Long-distance quantum teleportation and quantum repeater technologies require entanglement between a...
The development of quantum relays for long-haul and attack-proof quantum communication networks oper...
Teleportation is a fundamental concept of quantum mechanics with an important application in extendi...
Quantum cryptography allows confidential information to be communicated between two parties, with se...
Quantum teleportation is essential for many quantum information technologies, including long-distanc...
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...
Entanglement drives nearly all proposed quantum information technologies. The suppression of the unc...
International audienceWe report on a two-photon interference experiment in a quantum relay configura...
The ability to control the optical frequency of quantum state carriers (i.e. photons) is an importan...
Using entangled pairs of photons from a frequency comb and wide-band frequency-resolved homodyne det...