Quantum encoder whose polarization state is modulated by phase and decoder and its application
A phase modulator and quantum coding technology, applied in the field of polarization compensation, can solve the problems of halving the efficiency, inconvenient use, and expensive equipment.
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Embodiment 1
[0031] Embodiment 1: Carry out quantum cryptography communication of BB84 protocol with four-state quantum encoder and decoder
[0032] For the first time, we have experimentally realized the quantum cryptography communication of the BB84 protocol using the 4-state encoding method of "two linear polarization states plus two circular polarization states". Optical path such as image 3 As shown, the method is as follows: Alice uses a four-state quantum encoder to randomly prepare photons of four non-orthogonal polarization states, and transmits them to Bob through an optical fiber, and Bob uses a four-state quantum encoder to randomly generate four sets of non-orthogonal polarization state measurements base, to detect the four non-orthogonal polarization state photons sent by Alice, in the case of detecting photons, Bob sends the measurement bases used to Alice through the public channel, Alice tells Bob that the measurement bases are selected correctly, and then Alice Keep the...
Embodiment 2
[0033] Embodiment 2: Use a six-state quantum encoder and a decoder to perform six-state encoded quantum cryptography communication.
[0034] For the first time, we have carried out six-state quantum cryptography communication with six-state encoding, and the optical path is as follows Figure 5 As shown, Alice uses a six-state quantum encoder to randomly prepare photons of six non-orthogonal polarization states, and transmits them to Bob through an optical fiber. Bob uses a six-state quantum encoder to randomly generate six non-orthogonal polarization state measurement bases. The six non-orthogonal polarization state photons sent by Alice are detected. In the case of detecting photons, Bob sends the measurement bases used to Alice through the public channel. Alice tells Bob that the measurement bases are selected correctly, and then Alice and Bob keep The corresponding bits when the base is consistent are measured, and other data is discarded. Bob randomly announces some bits ...
Embodiment 3
[0035] Embodiment 3: Polarization Compensation by Phase Modulation of Polarization State
[0036] For the first time, we used the method of phase-modulating the polarization state to Figure 4 , Figure 5 The communication line shown has carried out the polarization compensation experiment, and the method is as follows: Alice sends a standard 45° linearly polarized state photon to Bob, and Bob detects with a 135° linearly polarized measurement base (according to Table 1, V 1 =V 0 / 2, V 2 =V 0 / 2, can produce this kind of measurement basis), if the polarization state of the photon does not change during the transmission process, then Bob will not be able to measure the photon, if the photon depolarization occurs during the transmission process, for example, it becomes right-handed elliptically polarized light, then, Bob may measure photons, at this time, Bob only needs to change V 1 voltage, making it in Fine-tuning is performed within the range until no photons are meas...
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