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Christopher J. Anders

5 accepted papers

2026

Bayesian Parameter Shift Rules in Variational Quantum Eigensolvers

ICLR 2026poster

Parameter shift rules (PSRs) are key techniques for efficient gradient estimation in variational quantum eigensolvers (VQEs). In this paper, we propose their Bayesian variant, where Gaussian processes with appropriate kernels are used to estimate the gradient of the VQE objective. Our Bayesian PSR o…

Cited by 0SourcecodeScholar
2025

Navigating Neural Space: Revisiting Concept Activation Vectors to Overcome Directional Divergence

ICLR 2025poster

With a growing interest in understanding neural network prediction strategies, Concept Activation Vectors (CAVs) have emerged as a popular tool for modeling human-understandable concepts in the latent space. Commonly, CAVs are computed by leveraging linear classifiers optimizing the *separability* o…

Cited by 5SourcePDFScholar
2024

Adaptive Observation Cost Control for Variational Quantum Eigensolvers

ICML 2024poster

The objective to be minimized in the variational quantum eigensolver (VQE) has a restricted form, which allows a specialized sequential minimal optimization (SMO) that requires only a few observations in each iteration. However, the SMO iteration is still costly due to the observation noise---one *o…

2024

From Hope to Safety: Unlearning Biases of Deep Models via Gradient Penalization in Latent Space

AAAI 2024technical

Deep Neural Networks are prone to learning spurious correlations embedded in the training data, leading to potentially biased predictions. This poses risks when deploying these models for high-stake decision-making, such as in medical applications. Current methods for post-hoc model correction eithe…

2023

Physics-Informed Bayesian Optimization of Variational Quantum Circuits

NeurIPS 2023poster

In this paper, we propose a novel and powerful method to harness Bayesian optimization for variational quantum eigensolvers (VQEs) - a hybrid quantum-classical protocol used to approximate the ground state of a quantum Hamiltonian. Specifically, we derive a *VQE-kernel* which incorporates important…