Information rate in quantum communication channel with depolarization at characters encoding with orthogonal quantum states
DOI:
https://doi.org/10.18372/2225-5036.19.4881Keywords:
quantum communication channel, depolarization, channel throughput, a photon counterAbstract
A mathematical model of the quantum communication channel with photon depolarization at binary characters encoding with orthogonal quantum states has been built. The formulae for both beamguide throughput calculation and the communication channel containing a beamguide and the photon counter have been obtained. On the basis of the conducted mathematical modeling it has been established that data throughput depends on depolarization probability and the beam guide length for a quantum communication channel with depolarization. As a result of experimental investigations it has been defined that the data throughput of quantum communication channel depends on the avalanche photodetector supply voltage of the photon counter.References
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