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相关论文: On the security of the Kirchhoff-law-Johnson-noise…

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In this paper we determine the noise properties needed for unconditional security for the ideal Kirchhoff-Law-Johnson-Noise (KLJN) secure key distribution system using simple statistical analysis. It has already been shown using physical…

密码学与安全 · 计算机科学 2014-05-07 Zoltan Gingl , Robert Mingesz

It has been shown recently that the use of two pairs of resistors with enhanced Johnson-noise and a Kirchhoff-loop-i.e., a Kirchhoff-Law-Johnson-Noise (KLJN) protocol-for secure key distribution leads to information theoretic security…

新兴技术 · 计算机科学 2016-11-17 R. Mingesz , L. B. Kish , Z. Gingl , C. G. Granqvist , H. Wen , F. Peper , T. Eubank , G. Schmera

A secure key distribution (exchange) scheme is unconditionally secure if it is unbreakable against arbitrary technological improvements of computing power and/or any development of new algorithms. There are only two families of…

量子物理 · 物理学 2021-07-20 Christiana Chamon , Laszlo Kish

The Kirchhoff-Law-Johnson-Noise (KLJN) secure key exchange system has been introduced as a simple, very low cost and efficient classical physical alternative to quantum key distribution systems. The ideal system uses only a few electronic…

密码学与安全 · 计算机科学 2015-09-23 Gergely Vadai , Robert Mingesz , Zoltan Gingl

We introduce the so far most efficient attack against the Kirchhoff-law-Johnson-noise (KLJN) secure key exchange system. This attack utilizes the lack of exact thermal equilibrium in practical applications and is based on cable resistance…

新兴技术 · 计算机科学 2015-03-30 Laszlo B. Kish , Claes-Goran Granqvist

This article is a supplement to our recent one about the analysis of the noise properties in the Kirchhoff-Law-Johnson-Noise (KLJN) secure key exchange system [Gingl and Mingesz, PLOS ONE 9 (2014) e96109, doi:10.1371/journal.pone.0096109].…

密码学与安全 · 计算机科学 2014-09-30 Robert Mingesz , Gergely Vadai , Zoltan Gingl

The Kirchhoff-law-Johnson-noise (KLJN) scheme is a statistical/physical secure key exchange system based on the laws of classical statistical physics to provide unconditional security. We used the LTSPICE industrial cable and circuit…

密码学与安全 · 计算机科学 2016-06-03 Hsien-Pu Chen , Muneer Mohammad , Laszlo B. Kish

Noise: an enemy to be dealt with and a major factor limiting communication system performance. However, what if there is gold in that garbage? In conventional engineering, our focus is primarily on eliminating, suppressing, combating, or…

信息论 · 计算机科学 2024-06-28 Ertugrul Basar

We introduce two new Kirchhoff-law-Johnson-noise (KLJN) secure key distribution schemes which are generalizations of the original KLJN scheme. The first of these, the Random-Resistor (RR-) KLJN scheme, uses random resistors with values…

新兴技术 · 计算机科学 2016-03-04 Laszlo Bela Kish , Claes-Goran Granqvist

Recently, Bennett and Riedel (BR) (http://arxiv.org/abs/1303.7435v1) argued that thermodynamics is not essential in the Kirchhoff-law-Johnson-noise (KLJN) classical physical cryptographic exchange method in an effort to disprove the…

密码学与安全 · 计算机科学 2013-12-18 Laszlo B. Kish , Derek Abbott , Claes-Goran Granqvist

We survey the most important results and some recent developments about the secure key exchange protocol where the security is based on the Second Law of Thermodynamics and the robustness of classical physical information. We conclude that…

综合物理 · 物理学 2010-04-28 Laszlo B. Kish

This paper introduces a new attack against the Kirchhoff-Law-Johnson-Noise (KLJN) secure key exchange scheme. The attack is based on the nonlinearity of the noise generators. We explore the effect of total distortion (TD) at the second…

密码学与安全 · 计算机科学 2021-08-24 Christiana Chamon , Laszlo B. Kish

The security of the Kirchhoff-law-Johnson-(like)-noise (KLJN) key exchange system is based on the Fluctuation-Dissipation-Theorem of classical statistical physics. Similarly to quantum key distribution, in practical situations, due to the…

新兴技术 · 计算机科学 2015-11-23 Hsien-Pu Chen , Elias Gonzalez , Yessica Saez , Laszlo B. Kish

A method to quantify the error probability at the Kirchhoff-law-Johnson-noise (KLJN) secure key exchange is introduced. The types of errors due to statistical inaccuracies in noise voltage measurements are classified and the error…

新兴技术 · 计算机科学 2013-12-18 Yessica Saez , Laszlo B. Kish

In this paper, we survey the state of the art of the secure key exchange method that is secured by the laws of classical statistical physics, and involves the Kirchhoff's law and the generalized Johnson noise equation, too. We discuss the…

密码学与安全 · 计算机科学 2012-06-07 Laszlo B. Kish , Ferdinand Peper

The statistical-physics-based Kirchhoff-law-Johnson-noise (KLJN) key exchange offers a new and simple unclonable system for credit/debit card chip authentication and payment. The key exchange, the authentication and the communication are…

新兴技术 · 计算机科学 2016-07-21 Laszlo Bela Kish , Kamran Entesari , Claes-Goran Granqvist , Chiman Kwan

We point out that the claims in the comment-paper of Scheuer and Yariv are either irrelevant or incorrect. The idealized Kirchoff-loop-Johnson-like-noise (KLJN) scheme is totally secure therefore it is more secure than idealized quantum…

综合物理 · 物理学 2007-05-23 Laszlo B. Kish

This paper deals with the Kirchhoff-law-Johnson-noise (KLJN) classical statistical physical key exchange method and surveys criticism - often stemming from a lack of understanding of its underlying premises or from other errors - and our…

新兴技术 · 计算机科学 2015-03-30 Laszlo B. Kish , Derek Abbott , Claes-Goran Granqvist , He Wen

We introduce seven new versions of the Kirchhoff-Law-Johnson-(like)-Noise (KLJN) classical physical secure key exchange scheme and a new transient protocol for practically-perfect security. While these practical improvements offer…

密码学与安全 · 计算机科学 2013-06-18 Laszlo B. Kish

This dissertation demonstrates three new types of attacks against the KLJN scheme. The first attack type is based on compromised RNGs. The first RNG attacks are deterministic. First, Eve knows both noises. She can crack the bit via Ohm's…

密码学与安全 · 计算机科学 2021-12-17 Christiana Chamon
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