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Finite-temperature Wigner solid and other phases of ripplonic polarons on a helium film

机译:氦膜上瑞普极化子的有限温度Wigner固相和其他相

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Electrons on liquid helium can form different phases depending on density, and temperature. Also the electron-ripplon coupling strength influences the phase diagram, through the formation of so-called "ripplonic polarons", that change how electrons are localized, and that shifts the transition between the Wigner solid and the liquid phase. We use an all-coupling, finite-temperature variational method to study the formation of a ripplopolaron Wigner solid on a liquid helium film for different regimes of the electron-ripplon coupling strength. In addition to the three known phases of the ripplopolaron system (electron Wigner solid, polaron Wigner solid, and electron fluid), we define and identify a fourth distinct phase, the ripplopolaron liquid. We analyse the transitions between these four phases and calculate the corresponding phase diagrams. This reveals a reentrant melting of the electron solid as a function of temperature. The calculated regions of existence of the Wigner solid are in agreement with recent experimental data.
机译:液氦上的电子可以根据密度和温度形成不同的相。电子-涟漪耦合强度还通过形成所谓的“激子极化子”来影响相图,该“激子极化子”改变了电子的定位方式,并改变了维格纳固体和液相之间的跃迁。我们使用全耦合,有限温度变化方法研究液氦膜上针对电子-涟漪耦合强度的不同形式的ripplopolaron Wigner固体的形成。除了ripplopolaron系统的三个已知相(电子威格纳固体,极化子威格纳固体和电子流体)之外,我们还定义并确定了第四个不同的相,ripplopolaron液体。我们分析了这四个阶段之间的过渡,并计算了相应的相图。这揭示了电子固体的折返熔化随温度的变化。维格纳固体存在的计算区域与最近的实验数据一致。

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