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20202025
most citedPerspective -- On the thermodynamics of perfect unconditional security

15 citations · 19 across the 11 of their papers we have counts for

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cs.CR2025

TherMod Communication: Low Power or Hot Air?

Christiana Chamon

The Kirchhoff-Law-Johnson-Noise (KLJN) secure key exchange scheme leverages statistical physics to enable secure communication with zero average power flow in a wired channel. Whil…

cs.CR2025

Duality on the Thermodynamics of the Kirchhoff-Law-Johnson-Noise (KLJN) Secure Key Exchange Scheme

Sarah Flanery, Anson Trapani, Christiana Chamon +1

This study investigates a duality approach to information leak detection in the generalized Kirchhoff-Law-Johnson-Noise secure key exchange scheme proposed by Vadai, Mingesz, and G…

cs.CR2023

Kirchhoff-Law Johnson Noise Meets Web 3.0: A Statistical Physical Method of Random Key Generation for Decentralized Identity Protocols

Christiana Chamon, Kamalesh Mohanasundar, Sarah A. Flanery +1

This paper presents a statistical physical generation of random keys for a decentralized identity ecosystem that uses Web 3.0 protocols. Web 3.0 is driven by secure keys, typically…

cs.CR2022

Current injection and voltage insertion attacks against the VMG-KLJN secure key exchanger

Shahriar Ferdous, Christiana Chamon, Laszlo B. Kish

In this paper, the vulnerability of the Vadai, Mingesz and Gingl (VMG)- Kirchhoff-Law-Johnson-Noise (KLJN) Key Exchanger (Nature, Science Report 5 (2015) 13653) against two active…

cs.CR2021

Random Number Generator, Zero-Crossing, and Nonlinearity Attacks against the Kirchhoff-Law-Johnson-Noise (KLJN) Secure Key Exchange Protocol

Christiana Chamon

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. Firs…

cs.CR2021

Statistical Random Number Generator Attack against the Kirchhoff-Law-Johnson-Noise (KLJN) Secure Key Exchange Protocol

Christiana Chamon, Shahriar Ferdous, Laszlo B. Kish

This paper introduces and demonstrates four new statistical attacks against the Kirchhoff-Law-Johnson-Noise (KLJN) secure key exchange scheme. The attacks utilize compromised rando…