通信系统中的量子效应

James P. Gordon
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引用次数: 167

摘要

考虑了各种通信系统的信息容量。量子效应被充分考虑在内。发现了在单一传输模式下具有白噪声量子统计特性的电磁波的熵,由此可以推导出各种可能系统的信息效率。所考虑的接收系统包括放大器、外差和外差转换器以及量子计数器。在高信号或噪声功率的极限下(与νB相比,h为普朗克常数,ν和B分别为通道的中心频率和带宽),放大器的信息效率可以接近于1。在低功率的限制下,放大器变得低效,而量子计数器的效率可以接近统一。当功率降到h b以下时,能包含在波中的信息量下降得相当快。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantum Effects in Communications Systems
The information capacity of various communications systems is considered. Quantum effects are taken fully into account. The entropy of an electromagnetic wave having the quantum statistical properties of white noise in a single transmission mode is found, and from it the information efficiency of various possible systems may be derived. The receiving systems considered include amplifiers, heterodyne and homodyne converters and quantum counters. In the limit of high signal or noise power (compared to hνB, where h is Planck's constant and ν and B are, respectively, the center frequency and bandwidth of the channel) the information efficiency of an amplifier can approach unity. In the limit of low powers the amplifier becomes inefficient, while the efficiency of the quantum counter can approach unity. The amount of information that can be incorporated in a wave drops off rather rapidly when the power drops below hνB.
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