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Zero-Signal-Power Communication: Zero-Power Classical Communication, Zero-Quantum Quantum Communication and Environmental-Noise Communication

机译:零信号功率通信:零功率经典通信,零量子量子通信和环境噪声通信

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摘要

A new physical way of communication, communication by the inherent background noise, is proposed which does not need net energy transfer in the information channel. The communicator devices do dissipate energy however they do not emit net energy into the channel, instead of that, they modulate the parameters of inherent spontaneous fluctuations in the channel. The new method can use two different mechanisms, thermal noise (Johnson-Nyquist noise) for classical communication, and vacuum fluctuations/zero point energy (quantum uncertainty noise) for quantum communication. The strongest advantage of the method that this is apparently the most hidden (stealth) way of communication, because it is using the inherent background noise for communication, therefore it is extremely difficult or impossible to discover its presence. Moreover, with proper wave-based arrangements, the sender and the receiver can easily detect eavesdropper activities, so that the eavesdropper is detected as soon as she extracts a single bit of information, thus the security of the method is at least as good or better than the security of quantum communication/quantum key distribution schemes. Finally, concerning practical applications, environmental noise, out of the fundamental/inherent fluctuations, can also be used for this kind of communication provided that is sufficiently stationary.
机译:提出了一种新的物理通信方式,即通过固有的背景噪声进行通信,该通信方式不需要在信息通道中进行净能量传输。通信器设备确实会耗散能量,但是它们不会向通道中释放净能量,相反,它们会调制通道中固有的自发波动的参数。新方法可以使用两种不同的机制,经典通信使用热噪声(Johnson-Nyquist噪声),而量子通信使用真空波动/零点能量(量子不确定性噪声)。该方法的最大优势在于,它显然是最隐蔽(隐形)的通信方式,因为它使用固有的背景噪声进行通信,因此很难或不可能发现其存在。而且,通过适当的基于波的布置,发送者和接收者可以容易地检测到窃听者的活动,因此,只要窃听者提取出一点信息,就可以对其进行检测,因此该方法的安全性至少是一样好或更好。而不是量子通信/量子密钥分配方案的安全性。最后,关于实际应用,基本/固有波动中的环境噪声也可以用于这种通信,前提是必须足够固定。

著录项

  • 作者

    Kish, L B;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 eng
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