论文标题

探测旋转液体汉密尔顿量子模拟器中的分数统计数据

Probing fractional statistics in quantum simulators of spin liquid Hamiltonians

论文作者

Zhou, Shiyu, Zelenayova, Maria, Hart, Oliver, Chamon, Claudio, Castelnovo, Claudio

论文摘要

可编程量子设备的最新进展使使用它们实现和研究拓扑量子自旋液相的有趣可能性。这个新的令人兴奋的方向提出了有关如何探测和确定这种异国情调,高度纠缠的相位的重要研究问题。最有前途的工具之一是研究拓扑激发的行为,尤其是它们的分数统计数据。在这项工作中,我们提出了一条通用途径来实现这一目标,并在$ \ Mathbb {z} _2 $拓扑液体的特定情况下对其进行了说明。我们设计了一种方便的架构,以通过准粒子干涉测量法研究分数统计的特征,并评估其对角和非对角线疾病的稳健性,以及对dephasing的稳健性 - 通常在嘈杂的量子可编程设备中普遍存在的效果。我们方案的一个有用的对应物是,它对这些设备的“量子性”提供了清晰的测试,因为我们正在寻找对系统中量子相干性和量子干扰效应至关重要的签名。

Recent advances in programmable quantum devices brought to the fore the intriguing possibility of using them to realise and investigate topological quantum spin liquid phases. This new and exciting direction brings about important research questions on how to probe and determine the presence of such exotic, highly entangled phases. One of the most promising tools is investigating the behaviour of the topological excitations, and in particular their fractional statistics. In this work we put forward a generic route to achieve this, and we illustrate it in the specific case of $\mathbb{Z}_2$ topological spin liquids implemented with the aid of combinatorial gauge symmetry. We design a convenient architecture to study signatures of fractional statistics via quasiparticle interferometry, and we assess its robustness to diagonal and off-diagonal disorder, as well as to dephasing -- effects that are generally pervasive in noisy quantum programmable devices. A useful counterpart of our scheme is that it provides a clear test of the `quantumness' of these devices, since the signatures that we are looking for crucially hinge on quantum coherence and quantum interference effects in the system.

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