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Applications of quantum cryptography.

机译:量子密码学的应用。

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摘要

This thesis extends the applicability of quantum cryptography.;In addition, we have designed quantum security systems in unconventional settings. The security of sensor networks poses specific challenges, as the sensor nodes in particular can be physically picked up by the intruder. Our scheme protects both the integrity of the communication messages and it also protects the identity of the nodes, such that a reading intrusion of a node is detectable.;The problem of access control in a hierarchy refers to a large number of users, organized in a hierarchy, having selective access rights to a database. Our quantum solution introduces quantum keys to the effect that the cryptographic scheme is dynamically adaptable to changes in the user structure, and it exhibits increased security levels.;To the best of our knowledge, this thesis is the first to introduce quantum keys, that is secret keys defined by an array of qubits. We show that quantum keys make it possible for two parties to communicate with one-time pads without having to meet in advance. Also, opposite to previous cryptographic "common sense", the security level of a quantum cryptosystem with quantum keys and quantum messages is maintained while being used.;First, we prove that quantum cryptography at least equals classical cryptography in an important area, namely authentication. The quantum key distribution protocols presented here show that, contrary to previous belief, authentication can be done with quantum methods only.
机译:本论文扩展了量子密码学的适用性。此外,我们设计了非常规环境下的量子安全系统。传感器网络的安全性提出了特定的挑战,因为入侵者尤其可以物理地拾取传感器节点。我们的方案既保护了通信消息的完整性,又保护了节点的身份,从而可以检测到节点的读取入侵。层次结构中的访问控制问题涉及到大量的用户,具有对数据库的选择性访问权限的层次结构。我们的量子解决方案引入了量子密钥,其作用是使加密方案可动态适应用户结构的变化,并且具有更高的安全级别。据我们所知,本论文是第一个引入量子密钥的,即由一组量子位定义的秘密密钥。我们证明了量子密钥使两方无需一次见面即可与一次性便笺簿进行通信。此外,与以前的密码“常识”相反,使用时具有量子密钥和量子消息的量子密码系统的安全级别得以维持。首先,我们证明了量子密码至少在一个重要领域等同于经典密码,即身份验证。 。这里提出的量子密钥分发协议表明,与以前的看法相反,认证只能使用量子方法来完成。

著录项

  • 作者

    Nagy, Naya.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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