SoK: Adversarial Robustness of the Variational Quantum Eigensolver via Red-Teaming
Ahmed Azaz Humdoon, Cheng Chu, Lei Jiang, Qian Lou, Mengxin Zheng
Abstract
The Variational Quantum Eigensolver (VQE) is a leading algorithm for estimating molecular ground-state energies on near-term quantum hardware, with applications spanning quantum chemistry, materials science, and drug discovery. As VQE workloads are increasingly deployed through cloud-based ``VQE-as-a-service'' pipelines, they become exposed to adversaries such as compromised service components, malicious co-tenants, or insiders in the transpilation stack, any of which can corrupt results before they reach the user. A range of attacks on variational quantum circuits has been proposed, but each has been studied in isolation: some on quantum classifiers with accuracy-based metrics, others on variational quantum algorithms with energy-error metrics. This lack of a common evaluation setup makes their relative severity difficult to compare and leaves the security of VQE poorly characterized. In this work, we present VQE-AdvBench, the first unified red-teaming benchmark for the Variational Quantum Eigensolver, systematizing these attacks under a single evaluation protocol to rigorously assess VQE's adversarial robustness. We organize attacks along a black-, gray-, and white-box access taxonomy, and evaluate seven representative attack scenarios -- the QTrojan circuit backdoor, the QDoor parameter backdoor, parameter-space adaptations of FGSM and PGD, and three QNBAD noise-induced variants -- over a fixed molecule-ansatz-backend-metric configuration, on H2 and H3+ across five noise-calibrated IBM backends. Our results reveal a clear severity ordering: noise-induced attacks that manipulate the Zero-Noise Extrapolation (ZNE) pipeline are the most damaging (up to 8.84× error amplification), followed by the QTrojan circuit-level backdoor (7.52×), while the QDoor parameter-level backdoor is the least effective, yielding only marginal amplification (up to 1.37×).
Create a lesson
Related papers
Directional pumping of a two-level system by a fluctuation-regulated quantum source
Sarfraj Fency, Rangeet Bhattacharyya
Correlation measure for statistical systems
V. I. Yukalov, E. P. Yukalova
General Photon Subtraction from a Gaussian Perspective
Niklas Budinger, Ulrik L. Andersen, Peter van Loock
Efficient Simulation of Hybrid Continuous- and Discrete-Variable Quantum Circuits via Gaussian Decompositions
Kazufumi Tanji, Dot Belin Pio, Shohei Kiryu et al.
Cubic Phase Gate with a Trapped Ion Oscillator
Nigel Benjamin Lee Junsheng, Eugene Koh Jun Wei, Mu Young Kim et al.
Log-Euclidean Rényi Conditional Mutual Information
Roberto Rubboli, Amir Arqand, Mark M. Wilde