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Towards Efficient Ansatz Architecture for Variational Quantum Algorithms

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arxiv 2111.13730 v1 pith:Q5FIVT2U submitted 2021-11-26 quant-ph cs.LG

Towards Efficient Ansatz Architecture for Variational Quantum Algorithms

classification quant-ph cs.LG
keywords quantumalgorithmsvariationalcostfunctiongradienttrainingvanishing
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Variational quantum algorithms are expected to demonstrate the advantage of quantum computing on near-term noisy quantum computers. However, training such variational quantum algorithms suffers from gradient vanishing as the size of the algorithm increases. Previous work cannot handle the gradient vanishing induced by the inevitable noise effects on realistic quantum hardware. In this paper, we propose a novel training scheme to mitigate such noise-induced gradient vanishing. We first introduce a new cost function of which the gradients are significantly augmented by employing traceless observables in truncated subspace. We then prove that the same minimum can be reached by optimizing the original cost function with the gradients from the new cost function. Experiments show that our new training scheme is highly effective for major variational quantum algorithms of various tasks.

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Cited by 3 Pith papers

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    quant-ph 2026-07 conditional novelty 6.0

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  3. A Correlation Aware Quantum Feature Map for Variational Quantum Classification

    quant-ph 2026-06 unverdicted novelty 5.0

    CAQFM adds controlled quantum gates based on Pearson, Spearman, Kendall Tau, Mutual Information, and Distance Correlation measures to create richer feature maps, yielding higher accuracy than standard maps in VQC simu...