论文标题

相关量子状态的超指数区分性

Super-exponential distinguishability of correlated quantum states

论文作者

Bunth, Gergely, Maróti, Gábor, Mosonyi, Milán, Zimborás, Zoltán

论文摘要

在渐近二进制I.I.D.状态歧视,I型和II型误差概率的最佳渐近学是作为样本数量的函数的指数下降至零。可实现的指数对集的特征在于量子hoeffding结合定理。两种类型的误差概率的超额指数下降仅在两种状态是正交时的琐碎情况下才有可能,因此只能使用系统的单个副本才能完美区分。 在本文中,我们表明,当样本之间存在相关性时,可以在质量上发生不同的行为。也就是说,我们在规范的反信誉关系的代数上使用规范的不变和翻译不含准式状态,以在无限自旋链上展示成对的状态,具有a)a)所有有限尺寸的限制的状态限制的状态都具有可逆密度的操作员,并且与II型和类型的II级别的ii级别的速度降低了,b)至少是b) $ e^{ - nc \ log n} $,带有一些正常数$ c $,即,样本大小$ n $的超指定速度。此类状态的特定示例包括对应于不同横向磁场的$ XX $模型的基态。实际上,我们在二元复合假设检验的设置中证明了我们的结果,因此可以将其应用于假设的超指定性区分性,即横向磁场高于一定的阈值,而该阈值低于严格较低的值。

In the problem of asymptotic binary i.i.d. state discrimination, the optimal asymptotics of the type I and the type II error probabilities is in general an exponential decrease to zero as a function of the number of samples; the set of achievable exponent pairs is characterized by the quantum Hoeffding bound theorem. A super-exponential decrease for both types of error probabilities is only possible in the trivial case when the two states are orthogonal, and hence can be perfectly distinguished using only a single copy of the system. In this paper we show that a qualitatively different behaviour can occur when there is correlation between the samples. Namely, we use gauge-invariant and translation-invariant quasi-free states on the algebra of the canonical anti-commutation relations to exhibit pairs of states on an infinite spin chain with the properties that a) all finite-size restrictions of the states have invertible density operators, and b) the type I and the type II error probabilities both decrease to zero at least with the speed $e^{-nc\log n}$ with some positive constant $c$, i.e., with a super-exponential speed in the sample size $n$. Particular examples of such states include the ground states of the $XX$ model corresponding to different transverse magnetic fields. In fact, we prove our result in the setting of binary composite hypothesis testing, and hence it can be applied to prove super-exponential distinguishability of the hypotheses that the transverse magnetic field is above a certain threshold vs. that it is below a strictly lower value.

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