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Kibble-Zurek mechanism from different angles: The transverse XY model and subleading scalings

机译:来自不同角度的Kibble-zurek机制:横向XY模型和外侧缩放

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摘要

The Kibble-Zurek mechanism describes the saturation of critical scaling upon dynamically approaching a phase transition. This is a consequence of the breaking of adiabaticity due to the scale set by the slow drive. By driving the gap parameter, this can be used to determine the leading critical exponents. But this is just the 'tip of the iceberg:' Driving more general couplings allows one to activate the entire universal spectrum of critical exponents. Here we establish this phenomenon and its observable phenomenology for the quantum phase transitions in an analytically solvable minimal model and the experimentally relevant transverse XY model. The excitation density is shown to host the sequence of exponents including the subleading ones in the asymptotic scaling behavior by a proper design of the geometry of the driving protocol in the phase diagram. The case of a parallel drive relative to the phase boundary can still lead to the breaking of adiabaticity, and exposes the subleading exponents in the clearest way. Complemenlarily to disclosing universal information, we extract the restrictions due to the nonuniversal content of the models onto the extent of the subleading scalings regimes.
机译:KIBBE-ZUREK机制描述了在动态接近相位转换时临界缩放的饱和度。这是由于慢速驱动器设置的尺度导致绝热性的后果。通过驱动间隙参数,可以使用它来确定领先的关键指数。但这只是'冰山一角:'驾驶更多一般耦合允许一个人激活临界指数的整个通用频谱。在这里,我们建立了这种现象及其可观察的现象学,用于分析可溶性最小模型和实验相关的横向XY模型中的量子相转变。通过在相图中的驱动协议的几何形状的适当设计,唤起包括渐近缩放行为中的前瞻性的指令序列。相对于相位边界的平行驱动的情况仍然可以导致绝热性的破坏,并以最清晰的方式暴露外盲指数。随着披露普遍信息,我们提取由于模型的非同意性内容的限制,在外侧缩放制度的范围内。

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