论文标题

量子糖果和量子密码学

Quantum Candies and Quantum Cryptography

论文作者

Lin, Junan, Mor, Tal

论文摘要

量子信息领域越来越广为人知。但是,有效地向公众证明量子科学和技术下的概念可能是一项艰巨的工作。我们在这里调查,扩展和大量扩展“量子糖果”(由雅各布斯发明),这是一种教学模型,用于直观地描述量子信息中的一些基本概念,包括量子位,互补性,无键原则和纠缠。遵循雅各布的量子糖果对众所周知的量子键分布协议BB84的描述,我们以平易近人的方式使用量子糖果明确说明了各种其他额外的量子加密协议。我们研究的模型可以成为科学和工程教育者的宝贵工具,他们希望帮助公众获得有关量子科学和技术的更多见解:本文的大多数部分,包括许多用于量子加密的协议,没有任何以前的数学,物理学或密码学知识,可以轻松理解。

The field of quantum information is becoming more known to the general public. However, effectively demonstrating the concepts underneath quantum science and technology to the general public can be a challenging job. We investigate, extend, and much expand here "quantum candies" (invented by Jacobs), a pedagogical model for intuitively describing some basic concepts in quantum information, including quantum bits, complementarity, the no-cloning principle, and entanglement. Following Jacob's quantum candies description of the well known quantum key distribution protocol BB84, we explicitly demonstrate various additional quantum cryptography protocols using quantum candies in an approachable manner. The model we investigate can be a valuable tool for science and engineering educators who would like to help the general public to gain more insights about quantum science and technology: most parts of this paper, including many protocols for quantum cryptography, are expected to be easily understandable by a layperson without any previous knowledge of mathematics, physics, or cryptography.

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