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Electrically controlled two-dimensional electron-hole fluids

机译:电控二维电子 - 空穴流体

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We study the electronic properties of dual-gated electron-hole bilayers in which the two layers are separated by a perfectly opaque tunnel barrier. Combining an electrostatic and thermodynamic analysis with mean-field theory estimates of interacting system chemical potentials, we explain the dependence of the electron and hole densities on the two gate voltages. Because chemical potential jumps occur for both electrons and holes at neutrality, there is a finite area in gate voltage parameter space over which electron and hole densities are equal. In that regime the electron-hole pair density depends only on the sum of the two gate voltages. We are able to explain a recent experimental study of electrically controlled bilayers by allowing for interlayer tunneling and using a nonequilibrium steady-state transport picture.
机译:我们研究了双门控电子孔双层的电子特性,其中两层通过完全不透明的隧道屏障分开。 与互动系统化学电位的平均场理论估计相结合静电和热力学分析,解释了电子和孔密度对两个栅极电压的依赖性。 因为在中立中的电子和孔中发生化学电位跳跃,所以在栅极电压参数空间中存在有限区域,电子和孔密度相等。 在该制度中,电子 - 孔对密度仅取决于两个栅极电压的总和。 我们能够通过允许层间隧道和使用非稳态稳态传输图像来解释电控双层的最近实验研究。

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