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High-dimensional cryptography with spatial modes of light: tutorial

机译:具有空间方式的高维加密:教程

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Fast and secure sharing of information is among the prime concerns of almost any communication system. While commonly used cryptographic algorithms cannot provide unconditional security, high-dimensional (HD) quantum key distribution (QKD) offers an exceptional means to this end. Here, we provide a tutorial to demonstrate that HD QKD protocols can be implemented in an effective way using optical elements that are known to most optics labs. We use spatial modes of light as our HD basis and show how to simulate QKD experiments with bright classical light, fostering its easy implementation for a more general audience including industry laboratories or laboratory classes in university teaching and in advanced laboratories for validation purposes. In particular, we use orbital angular momentum Bessel-Gaussian modes for our HD QKD demonstration to illustrate and highlight the benefits of using spatial modes as their natural Schmidt basis and self-healing feature. (C) 2020 Optical Society of America
机译:快速、安全地共享信息是几乎所有通信系统最关心的问题之一。虽然常用的密码算法不能提供无条件的安全性,但高维(HD)量子密钥分发(QKD)提供了一种特殊的方法。在这里,我们提供了一个教程来演示HD QKD协议可以使用大多数光学实验室已知的光学元件以有效的方式实现。我们使用光的空间模式作为我们的HD基础,并展示如何用明亮的经典光模拟QKD实验,为更广泛的受众(包括工业实验室或大学教学中的实验室课程)和高级实验室的验证目的培养其易用性。特别是,我们在HD QKD演示中使用了轨道角动量贝塞尔-高斯模式,以说明并强调使用空间模式作为其自然施密特基础和自愈功能的好处。(C) 2020美国光学学会

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