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Performance of Coherent Frequency-Shift Keying for Classical Communication on Quantum Channels

机译:Quantum通道经典通信的相干频移键控性能

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We evaluate the performance of coherent frequency-shift keying (CFSK) [1], [2] alphabets for communication on quantum channels. We show that, contrarily to what previously thought, the square-root-measurement (SRM) is sub-optimal for discriminating CFSK states. Furthermore, we compute the maximum information transmission rate of the CFSK alphabet, observing that it employs at least as many frequency modes as the signal states, and compare it with standard phase-shift-keying. Finally, we introduce a discretized CFSK alphabet with higher mode-efficiency, exhibiting comparable error-probability performance with respect to CFSK and better rate performance. Our results suggest the existence of a tradeoff between the CFSK reduced error-probability and its mode efficiency.
机译:我们评估了相干频移键控(CFSK)[1],[2]字母在量子通道上的性能。 我们表明,与此前认为的,方形根测量(SRM)是鉴别CFSK状态的次优。 此外,我们计算CFSK字母的最大信息传输速率,观察其至少与信号状态一样多的频率模式,并将其与标准相移键盘进行比较。 最后,我们引入了具有更高模式效率的离散的CFSK字母表,表现出相对于CFSK和更好的速率性能的可比误差概率性能。 我们的结果表明,CFSK之间的权衡存在降低误差概率及其模式效率。

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