Quantum Mixedness Testing with Pauli Measurements

📅 2026-08-19
📈 Citations: 0
Influential: 0
📄 PDF
🤖 AI Summary
研究了通过单量子比特测量进行混合态检测的问题,提出了一种随机Pauli基测量协议,并给出了所需的副本数量。
📝 Abstract
We consider a fundamental problem of \emph{mixedness testing}: Given $n$ copies of an $N$-qubit state $ρ$, determine whether $ρ= \mathbb{I}_d/d$ or $\|ρ-\mathbb{I}_d/d\|_1 \geq \varepsilon$ with high probability, where $d = 2^N$. In particular, we focus on performing this task in the practical setting of single-qubit measurements, where measurements are prepared independently on each qubit. We provide a nearly complete picture of single-qubit mixedness tesing by showing $n = \widetildeΘ\left(\sqrt{10}^N/\varepsilon^2\right)$. To establish our lower bound, we introduce a new measurement-dependent lower bound framework for adaptive single-copy state certification. For the upper bound, we present a randomized Pauli basis measurement protocol, which relies on a new primitive for computationally efficient uniformity testing of correlation-concentrated distributions on the Boolean hypercube.
Problem

Research questions and friction points this paper is trying to address.

mixedness testing
quantum state
Pauli measurements
Innovation

Methods, ideas, or system contributions that make the work stand out.

single-qubit measurements
measurement-dependent lower bound
randomized Pauli basis measurement
uniformity testing
🔎 Similar Papers
No similar papers found.
💼 Related Jobs
No related jobs found.