Co-located simulations on a neutral atom machine interfere more when placed closer, and a moving target defense that relocates the victim restores fidelity to about 0.995 in simulator tests.
Hacking quantum computers with row hammer attack
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abstract
We demonstrate a hardware vulnerability in quantum computing systems by exploiting cross-talk effects on an available commercial quantum computer (IBM). Specifically, based on the cross-talk produced by certain quantum gates, we implement a row hammer attack that ultimately allows us to flip a qubit. Both single-qubit and two-qubit operations are performed and analyzed. Our findings reveal that two-qubit operations applied near the target qubit significantly influence it through cross-talk, effectively compromising its state.
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Evaluation of Noise and Crosstalk in Neutral Atom Quantum Computers
Co-located simulations on a neutral atom machine interfere more when placed closer, and a moving target defense that relocates the victim restores fidelity to about 0.995 in simulator tests.