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  4. Quantum Adiabatic Generation of Human-Like Passwords
 
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2025
Conference Paper
Title

Quantum Adiabatic Generation of Human-Like Passwords

Abstract
Generative Artificial Intelligence (GenAI) for Natural Language Processing (NLP) is the predominant AI technology to date. An important perspective for Quantum Computing (QC) is the question whether QC has the potential to reduce the vast resource requirements for training and operating GenAI models. While large-scale generative NLP tasks are currently out of reach for practical quantum computers, the generation of short semantic structures such as passwords is not. Generating passwords that mimic real user behavior has many applications, for example to test an authentication system against realistic threat models. Classical password generation via deep learning have recently been investigated with significant progress in their ability to generate novel, realistic password candidates. In the present work we investigate the utility of adiabatic quantum computers for this task. More precisely, we study different encodings of token strings and propose novel approaches based on the Quadratic Unconstrained Binary Optimization (QUBO) and the Unit-Disk Maximum Independent Set (UD-MIS) problems. Our approach allows us to estimate the token distribution from data and adiabatically prepare a quantum state from which we eventually sample the generated passwords via measurements. Our results show that relatively small samples of 1 2 8 passwords, generated on the QuEra Aquila 256-qubit neutral atom quantum computer, contain human-like passwords such as Tunas200992 or teedem28iglove.
Author(s)
Mücke, Sascha
Technische Universität Dortmund
Heese, Raoul
NTT DATA Group Corporation
Gerlach, Thore
Lamarr Institute
Biesner, David  
Fraunhofer-Institut für Intelligente Analyse- und Informationssysteme IAIS  
Lee, Loong Kuan
Fraunhofer-Institut für Intelligente Analyse- und Informationssysteme IAIS  
Piatkowski, Nico  
Fraunhofer-Institut für Intelligente Analyse- und Informationssysteme IAIS  
Mainwork
IEEE Quantum Week 2025  
Funder
Bundesministerium für Forschung, Technologie und Raumfahrt  
Conference
International Conference on Quantum Computing and Engineering 2025  
Quantum Week 2025  
Quantum Science and Engineering Education Conference 2025  
DOI
10.1109/QCE65121.2025.00169
Language
English
Fraunhofer-Institut für Intelligente Analyse- und Informationssysteme IAIS  
Keyword(s)
  • adiabatic quantum computing

  • password generation

  • password guessing

  • quantum annealing

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