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Defect production in non-equilibrium phase transitions: experimental investigation of the Kibble–Zurek mechanism in a two-qubit quantum simulator

机译:非平衡相变中的缺陷产生:两量子位量子模拟器中的Kibble-Zurek机理的实验研究

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Systems passing through quantum critical points at finite rates have a finite probability of undergoing transitions between different eigenstates of the instantaneous Hamiltonian. This mechanism was proposed by Kibble as the underlying mechanism for the formation of topological defects in the early universe and by Zurek for condensed matter systems. Here, we use a system of nuclear spins as an experimental quantum simulator undergoing a non-equilibrium quantum phase transition. The experimental data confirm the validity of the Kibble–Zurek mechanism of defect formation.
机译:以有限的速率通过量子临界点的系统具有在瞬时哈密顿量的不同本征态之间进行转换的有限概率。该机制由Kibble提出,是早期宇宙中形成拓扑缺陷的基本机制,而Zurek则提出了其用于凝聚态系统。在这里,我们使用核自旋系统作为经历非平衡量子相变的实验量子模拟器。实验数据证实了缺陷形成的Kibble-Zurek机制的有效性。

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