Lune

STOC2026顶会

The Power of Two Bases: Robust and Copy-Optimal Certification of Nearly All Quantum States with Few-Qubit Measurements

Andrea Coladangelo, Jerry Li, Joseph Slote, Ellen Wu

2026年份
5被引次数

摘要

A central task in quantum information science is state certification: testing whether an unknown state is ϵ1-close to a fixed target state, or ϵ2-far. Recent work has shown that surprisingly simple measurement protocols-comprising only single-qubit measurements-suffice to certify arbitrary n-qubit states [HPS25, GHO25]. However, these certification protocols are not robust: rather than allowing constant ϵ1, they can only positively certify states within ϵ1 = O(1/n) trace distance of the target. In many experimental settings, the appropriate error tolerance is constant as the system size grows, so this lack of robustness renders existing tests inapplicable at scale, no matter how many times the test is repeated.

Here we present robust certification protocols based on few-qubit measurements that apply to all but a O(2 -n )-fraction of pure target states. Our first protocol achieves constant robustness, i.e. ϵ1 = Θ(1), using a single O(log n)-qubit measurement along with single-qubit measurements in the Z or X basis on the other qubits. As a corollary of its robustness, this protocol also achieves constant (in n) copy complexity, which is optimal. Our second protocol uses exclusively single-qubit measurements and is nearly robust: ϵ1 = Ω(1/ log n). Our tests are based on a new uncertainty principle for conditional fidelities which may be of independent interest.

问问这篇 Paper

智能体会读完全文。

Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。

可以从这些问题问起

智能体调用

Luneget_paper_fulltext

在 Lune 里问

免费开始,无需绑卡

它引用的顶会 Paper4

相关 Paper

黄昏的海面,两侧是细线勾勒的悬崖