We present an experimental realization of a robust quantum communication scheme [Phys. Rev. Lett. 93, 220501 (2004)] using pairs of photons entangled in polarization and time. Our method overcomes errors due to collective rotation of the polarization modes (e.g., birefringence in optical fiber or misalignment), is insensitive to the phase's fluctuation of the interferometer, and does not require any shared reference frame including time reference, except the need to label different photons. The practical robustness of the scheme is further shown by implementing a variation of the Bennett-Brassard 1984 quantum key distribution protocol over 1 km optical fiber
Faithful transmission of quantum information is a crucial ingredient in quantum communication networ...
Quantum key distribution (QKD) based on entangled photon pairs holds the potential for repeater-base...
Conventional quantum key distribution (QKD) typically uses binary encoding based on photon polarizat...
We present an experimental realization of a robust quantum communication scheme [Phys. Rev. Lett. 93...
Noise and imperfection of realistic devices are major obstacles for implementing quantum cryptograph...
A one-way quantum key distribution scheme based on intrinsically stable Faraday-mirror type Michelso...
We report on a complete experimental implementation of a quantum key distribution protocol through a...
Standard quantum key distribution (QKD) protocols typically assume that the distant parties share a ...
At the heart of quantum physics lies the principle of superposition, and at the heart of information...
This work deals with creation, manipulation and detection of quantum photon states, in one and two d...
By realizing a quantum cryptography system based on polarization entangled photon pairs we establish...
We demonstrate a client-server quantum key distribution (QKD) scheme. Large resources such as laser ...
Contributed TalkInternational audienceDuring the last decade, quantum entanglement has paved the way...
Error-free transmission (EFT) of quantum information is a crucial ingredient in quantum communicatio...
We present a bright, narrowband, portable, quasi-phase-matched two-crystal source generating polariz...
Faithful transmission of quantum information is a crucial ingredient in quantum communication networ...
Quantum key distribution (QKD) based on entangled photon pairs holds the potential for repeater-base...
Conventional quantum key distribution (QKD) typically uses binary encoding based on photon polarizat...
We present an experimental realization of a robust quantum communication scheme [Phys. Rev. Lett. 93...
Noise and imperfection of realistic devices are major obstacles for implementing quantum cryptograph...
A one-way quantum key distribution scheme based on intrinsically stable Faraday-mirror type Michelso...
We report on a complete experimental implementation of a quantum key distribution protocol through a...
Standard quantum key distribution (QKD) protocols typically assume that the distant parties share a ...
At the heart of quantum physics lies the principle of superposition, and at the heart of information...
This work deals with creation, manipulation and detection of quantum photon states, in one and two d...
By realizing a quantum cryptography system based on polarization entangled photon pairs we establish...
We demonstrate a client-server quantum key distribution (QKD) scheme. Large resources such as laser ...
Contributed TalkInternational audienceDuring the last decade, quantum entanglement has paved the way...
Error-free transmission (EFT) of quantum information is a crucial ingredient in quantum communicatio...
We present a bright, narrowband, portable, quasi-phase-matched two-crystal source generating polariz...
Faithful transmission of quantum information is a crucial ingredient in quantum communication networ...
Quantum key distribution (QKD) based on entangled photon pairs holds the potential for repeater-base...
Conventional quantum key distribution (QKD) typically uses binary encoding based on photon polarizat...