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Effect of Independently Tunable Electron Layer Density on Wigner Crystallization in Electron-Hole Quantum Bilayers

机译:独立可调谐电子层密度对电子 - 孔量子双层中的Wigner结晶的影响

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A unique evidence of crystalline phase, known as Wigner crystal (WC), is explored in Electron-Hole quantum bilayers (EHBL) by tuning electron layer density independently at zero-temperature and zero-magnetic field. The quantum or dynamical version of Singwi, Tosi, Land and Sjolander (qSTLS) approach is used for obtaining the static density susceptibility. The static density susceptibility plays very important role for exploration of WC phase by showing a divergent behavior at finite wavevector, corresponds to the reciprocal lattice wavevector, during the phase transition from liquid state to WC ground-state. A comparison of present results with a recent results of dependently tunable EHBL system [Phys. Rev. B 66, 205316 (2002)] shows that the onset of Wigner crystallization now occurs at sufficiently lower interlayer spacing by tuning the electron layer density and keeping hole layer density fixed. Further, the prediction of WC phase gets support from the structure factor which exhibits a strong peak near the phase transition point.
机译:通过在零温和零磁场处独立地调谐电子层密度,在电子空穴量子双层(EHBL)中探索了已知为Wigner晶体(WC)的结晶相的独特证据。 Singwi,TOSI,陆地和Sjolander(QSTLS)方法的量子或动态版本用于获得静态密度敏感性。静态密度易感性通过在从液态到WC接地状态的相位过渡期间对应于有限波动的发散行为来对WC相探索的静态密度探索是非常重要的作用。目前结果与依赖调谐EHBL系统的最近结果的比较[物理。 Rev.B 66,205316(2002)]表明,通过调谐电子层密度并保持孔层密度固定时,现在通过足够较低的层间间隔发生时发生的疣状结晶开始。此外,WC相的预测得到了在相变点附近表现出强峰的结构因子的支持。

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