TY - JOUR
T1 - Polarization-Multiplexed Phase Modulation of Single Photons in a Sagnac Interferometer
AU - Liu, Geping
AU - Liang, Yan
AU - Chen, Yuanjin
AU - Zeng, Heping
N1 - Publisher Copyright:
© 1989-2012 IEEE.
PY - 2017/10/1
Y1 - 2017/10/1
N2 - Polarization-multiplexed phase modulation was demonstrated in a Sagnac interferometer for polarization-auto-compensating quantum key distribution. The Sagnac interferometer was composed of a polarization beam splitter to split the signal pulses into clockwise and counter-clockwise beams of different polarizations, a Faraday rotator to rotate the polarizations of the split clockwise and counter-clockwise beams, and two phase-modulators asymmetrically set in the Sagnac ring. With this structure, the delays of the electronic triggering signals for the two phase-modulators could be set separately, reducing the difficulty in the setup and achieving more precise phase modulation on different polarized beams. Such polarization-multiplexed phase modulation was appropriately gated in sequential time gates to ensure the long-term stability of automatic polarization compensation in the long-distance quantum key distribution system. Polarization-multiplexed phase modulation was implemented in a protocol quantum key distribution system of 25-km communicating fiber length, generating 20-kHz sifted key rate with a qubit error rate lower than 5%.
AB - Polarization-multiplexed phase modulation was demonstrated in a Sagnac interferometer for polarization-auto-compensating quantum key distribution. The Sagnac interferometer was composed of a polarization beam splitter to split the signal pulses into clockwise and counter-clockwise beams of different polarizations, a Faraday rotator to rotate the polarizations of the split clockwise and counter-clockwise beams, and two phase-modulators asymmetrically set in the Sagnac ring. With this structure, the delays of the electronic triggering signals for the two phase-modulators could be set separately, reducing the difficulty in the setup and achieving more precise phase modulation on different polarized beams. Such polarization-multiplexed phase modulation was appropriately gated in sequential time gates to ensure the long-term stability of automatic polarization compensation in the long-distance quantum key distribution system. Polarization-multiplexed phase modulation was implemented in a protocol quantum key distribution system of 25-km communicating fiber length, generating 20-kHz sifted key rate with a qubit error rate lower than 5%.
KW - Quantum cryptography
KW - phase modulation
KW - quantum communication
KW - quantum key distribution
UR - https://www.scopus.com/pages/publications/85023634039
U2 - 10.1109/LPT.2017.2726115
DO - 10.1109/LPT.2017.2726115
M3 - 文章
AN - SCOPUS:85023634039
SN - 1041-1135
VL - 29
SP - 1647
EP - 1650
JO - IEEE Photonics Technology Letters
JF - IEEE Photonics Technology Letters
IS - 19
M1 - 7976390
ER -