Pulse-Level Simulation of Crosstalk Attacks on Superconducting Quantum Hardware
July 22, 2025 Β· Declared Dead Β· π International Conference on Quantum Computing and Engineering
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Authors
Syed Emad Uddin Shubha, Tasnuva Farheen
arXiv ID
2507.16181
Category
quant-ph: Quantum Computing
Cross-listed
cs.CR
Citations
1
Venue
International Conference on Quantum Computing and Engineering
Last Checked
5 months ago
Abstract
Hardware crosstalk in multi-tenant superconducting quantum computers poses a severe security threat, allowing adversaries to induce targeted errors across tenant boundaries by injecting carefully engineered pulses. We present a simulation-based study of active crosstalk attacks at the pulse level, analyzing how adversarial control of pulse timing, shape, amplitude, and coupling can disrupt a victim's computation. Our framework models the time-dependent dynamics of a three-qubit system in the rotating frame, capturing both always-on couplings and injected drive pulses. We examine two attack strategies: attacker-first (pulse before victim operation) and victim-first (pulse after), and systematically identify the pulse and coupling configurations that cause the largest logical errors. Protocol-level experiments on quantum coin flip and XOR classification circuits show that some protocols are highly vulnerable to these attacks, while others remain robust. Based on these findings, we discuss practical methods for detection and mitigation to improve security in quantum cloud platforms.
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