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February 2, 2026ETRI Journal0 citationsOpen Access

QCrypton: An integrated platform for resource‐based quantum security strength evaluation of cryptographic algorithms

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YLYou‐Seok LeeJLJongheon LeeYKYousung Kang

Key Points

  • To develop and introduce QCrypton, a platform for assessing quantum vulnerabilities in cryptographic algorithms.
  • Introduced the QCrypton platform architecture and functionalities.
  • Implemented quantum circuit simulations and library generation.
  • Included an analysis module for assessing physical resource requirements in Fault‐Tolerant Quantum Computing (FTQC).
  • Demonstrated capabilities of QCrypton through resource-based analysis of cryptographic components.
  • Quantitatively assessed quantum vulnerabilities of various cryptographic algorithms.

Abstract

Abstract Quantum computing technology is driving transformative changes not only in the field of quantum computing but also across the broader domain of cryptography. As technology advances, the threat to conventional cryptographic systems is becoming increasingly tangible. This paper introduces the architecture and functionalities of the QCrypton platform, a quantum security strength analysis framework designed to quantitatively assess the quantum vulnerabilities inherent in various cryptographic algorithms. QCrypton provides an integrated environment that encompasses quantum circuit implementation, quantum simulation, and quantum library generation. In particular, it includes an analysis module for estimating the physical resource requirements for implementing quantum circuits in a Fault‐Tolerant Quantum Computing (FTQC) environment. The capabilities of the platform are demonstrated through the implementation and resource‐based analysis of fundamental components commonly used in cryptographic algorithms.

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Cite This Study

Lee et al. (2026) studied this question.

synapsesocial.com/papers/6980fe8ac1c9540dea810a5bhttps://doi.org/10.4218/etrij.2025-0299
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