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Crosstalk Attacks and Defence in a Shared Quantum Computing Environment

delete2025-08-03
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OA
AI
B
Benjamin Harper *
B
Behnam Tonekaboni
B
Bahar Goldozian
M
M. E. Sevior
M
Muhammad Usman
DOI:10.1002/qute.202500009delete
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Abstract

Abstract

En 中文
Quantum computing has the potential to provide solutions to problems that are intractable on classical computers, but the accuracy of the current generation of quantum computers suffer from the impact of noise or errors such as leakage, crosstalk, dephasing, and amplitude damping among others. As the access to quantum computers is almost exclusively in a shared environment through cloud-based services, it is possible that an adversary can exploit crosstalk noise to disrupt quantum computations on nearby qubits, even carefully designing quantum circuits to purposely lead to wrong answers. In this study, the extent and characteristics of crosstalk noise are studied through tomography conducted on IBM Quantum computers, leading to an enhanced crosstalk simulation model. These results indicate that crosstalk noise is a significant source of errors on IBM quantum hardware, making crosstalk based attack a viable threat to quantum computing in a shared environment. Based on the crosstalk simulator benchmarked against IBM hardware, the impact of crosstalk attacks and develop strategies are assessed for mitigating crosstalk effects. Through a systematic set of simulations, the effectiveness of three crosstalk attack mitigation strategies is assessed, namely circuit separation, qubit allocation optimization via reinforcement learning, and the use of spectator qubits, and show that they all overcome crosstalk attack risk with varying degrees of success and help to secure quantum computing in a shared platform.
Keywords:
crosstalk noise
quantum computing
quantum information
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Advanced Quantum Technologies
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the university of melbourne
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