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Onset of a quantum phase transition with a trapped ion quantum simulator

机译:俘获离子量子模拟器开始量子相变

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A quantum simulator is a well-controlled quantum system that can follow the evolution of a prescribed model whose behaviour may be difficult to determine. A good example is the simulation of a set of interacting spins, where phase transitions between various spin orders can underlie poorly understood concepts such as spin liquids. Here we simulate the emergence of magnetism by implementing a fully connected non-uniform ferromagnetic quantum Ising model using up to 9 trapped 171Yb+ ions. By increasing the Ising coupling strengths compared with the transverse field, the crossover from paramagnetism to ferromagnetic order sharpens as the system is scaled up, prefacing the expected quantum phase transition in the thermodynamic limit. We measure scalable order parameters appropriate for large systems, such as various moments of the magnetization. As the results are theoretically tractable, this work provides a critical benchmark for the simulation of intractable arbitrary fully connected Ising models in larger systems.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:量子模拟器是一个受控良好的量子系统,可以遵循其行为可能难以确定的指定模型的演化。一个很好的例子是一组相互作用的自旋的仿真,其中各种自旋顺序之间的相变可能是人们对诸如旋液之类的概念了解不足的基础。在这里,我们通过使用多达9个捕获的171Yb +离子实现完全连接的非均匀铁磁量子伊辛模型,来模拟磁性的出现。与横向磁场相比,通过提高Ising耦合强度,随着系统规模的扩大,从顺磁性到铁磁阶的交叉变尖锐,在热力学极限中出现了预期的量子相变。我们测量适用于大型系统的可扩展阶次参数,例如磁化的各个时刻。由于结果在理论上是易于处理的,因此这项工作为大型系统中难处理的任意完全连接的Ising模型的仿真提供了关键的基准。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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