Research Article Open Access

Analysis Quantum Implementation of Double AES Cryptography for Secure QR Code Generation

Jimmy Wijaya1 and Rojali 1
  • 1 Computer Science Department, Bina Nusantara University, Jakarta, Indonesia

Abstract

Data security faces unprecedented challenges due to the rapid advancement of quantum computing technologies, which threaten to compromise foundational classical cryptographic algorithms. This study investigates the quantum implementation of a Double Advanced Encryption Standard (Double AES) scheme for generating secure, tamper-resistant Quick Response (QR) codes. The research encompasses architectural design, quantum circuit construction, and empirical performance evaluation across encryption/decryption execution times, resource allocation, and circuit error rates. Furthermore, we evaluate the vulnerability of the scheme against quantum cryptanalysis by modeling Grover’s search algorithm to estimate key recovery costs in terms of gate counts and qubit requirements. While classical implementations maintain speed advantages on conventional hardware, our findings demonstrate that quantum Double AES yields enhanced resilience against key-search attacks, offering a scalable post-quantum safeguard for visual data carrier architectures.

Journal of Computer Science
Volume 22 No. 9, 2026, 2821-2833

DOI: https://doi.org/10.3844/jcssp.2026.2821.2833

Submitted On: 10 August 2025 Published On: 20 September 2026

How to Cite: Wijaya, J. & , R. (2026). Analysis Quantum Implementation of Double AES Cryptography for Secure QR Code Generation. Journal of Computer Science, 22(9), 2821-2833. https://doi.org/10.3844/jcssp.2026.2821.2833

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Keywords

  • Quantum Computing
  • Double AES Algorithm
  • Cryptography
  • QR Code
  • Data Security
  • Quantum Implementation