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Pitfalls when tackling the exponential concentration of parameterized quantum models

Pitfalls when tackling the exponential concentration of parameterized quantum models

来源:Arxiv_logoArxiv
英文摘要

Identifying scalable circuit architectures remains a central challenge in variational quantum computing and quantum machine learning. Many approaches have been proposed to mitigate or avoid the barren plateau phenomenon or, more broadly, exponential concentration. However, due to the intricate interplay between quantum measurements and classical post-processing, we argue these techniques often fail to circumvent concentration effects in practice. Here, by analyzing concentration at the level of measurement outcome probabilities and leveraging tools from hypothesis testing, we develop a practical framework for diagnosing whether a parameterized quantum model is inhibited by exponential concentration. Applying this framework, we argue that several widely used methods (including quantum natural gradient, sample-based optimization, and certain neural-network-inspired initializations) do not overcome exponential concentration with finite measurement budgets, though they may still aid training in other ways.

Reyhaneh Aghaei Saem、Behrang Tafreshi、Zoë Holmes、Supanut Thanasilp

物理学计算技术、计算机技术

Reyhaneh Aghaei Saem,Behrang Tafreshi,Zoë Holmes,Supanut Thanasilp.Pitfalls when tackling the exponential concentration of parameterized quantum models[EB/OL].(2025-07-29)[2025-08-11].https://arxiv.org/abs/2507.22054.点此复制

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