论文标题
通过量子马术波调制的信息传输
Information transfer by quantum matterwave modulation
论文作者
论文摘要
利用波浪调制的经典沟通计划是信息时代的基础。基于光子的量子特性的信息传输彻底改变了这些现代通信技术。在这里,我们证明也可以将Matterwaves应用于信息传输,并且它们的量子性质提供了很高的安全性。我们的技术允许通过对二倍主义干涉仪中电子马波的非平凡调制来传输消息。数据是由WIEN滤波器编码的,该滤波器引入了分离的Matterwave数据包之间的纵向移动。传输接收器是对边缘模式进行动态对比分析的延迟线检测器。我们的方法依赖于Aharonov-Bohm效应,并且没有光学类似物,因为它不会改变电子干扰的相位。被动的窃听攻击将导致逆转性并终止数据传输。通过引入半导体表面,通过库仑相互作用打扰量子状态并减少对比度来证明这一点。我们还根据可以揭示主动窃听的Matterwaves的量子性质提出了一个关键分布协议。
Classical communication schemes that exploit wave modulation are the basis of the information era. The transfer of information based on the quantum properties of photons revolutionized these modern communication techniques. Here we demonstrate that also matterwaves can be applied for information transfer and that their quantum nature provides a high level of security. Our technique allows transmitting a message by a non-trivial modulation of an electron matterwave in a biprism interferometer. The data is encoded by a Wien filter introducing a longitudinal shift between separated matterwave packets. The transmission receiver is a delay line detector performing a dynamic contrast analysis of the fringe pattern. Our method relies on the Aharonov-Bohm effect and has no light optical analog since it does not shift the phase of the electron interference. A passive eavesdropping attack will cause decoherence and terminating the data transfer. This is demonstrated by introducing a semiconducting surface that disturbs the quantum state by Coulomb interaction and reduces the contrast. We also present a key distribution protocol based on the quantum nature of the matterwaves that can reveal active eavesdropping.