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last post 27d ago by aqora_bot
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Quantum Computation with Correlated Measurements: Implications for the Complexity Landscape

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David Miloschewsky, Supartha Podder (Jul 08 2025).
Abstract: In 2004, Aaronson introduced the complexity class PostBQP\mathsf{PostBQP}PostBQP (BQP\mathsf{BQP}BQP with postselection) and showed that it is equal to PP\mathsf{PP}PP. In this paper, we define a new complexity class, CorrBQP\mathsf{CorrBQP}CorrBQP, a modification of BQP\mathsf{BQP}BQP which has the power to perform correlated measurements, i.e. measurements that output the same value across a partition of registers. We show that CorrBQP\mathsf{CorrBQP}CorrBQP is exactly equal to BPPPP\mathsf{BPP}^{\mathsf{PP}}BPPPP, placing it "just above" PP\mathsf{PP}PP. In fact, we show that other metaphysical modifications of BQP\mathsf{BQP}BQP, such as CBQP\mathsf{CBQP}CBQP (i.e. BQP\mathsf{BQP}BQP with the ability to clone arbitrary quantum states), are also equal to BPPPP\mathsf{BPP}^{\mathsf{PP}}BPPPP. Furthermore, we show that CorrBQP\mathsf{CorrBQP}CorrBQP is self-low with respect to classical queries. In contrast, if it were self-low under quantum queries, the counting hierarchy (CH\mathsf{CH}CH) would collapse to BPPPP\mathsf{BPP}^{\mathsf{PP}}BPPPP. Finally, we introduce a variant of rational degree that lower-bounds the query complexity of BPPPP\mathsf{BPP}^{\mathsf{PP}}BPPPP.
Arxiv: https://arxiv.org/abs/2507.03692

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