Theory and Modelling, Department of Physics, Chemistry and Biology (IFM), Linköping University, Sweden.
Philos Trans A Math Phys Eng Sci. 2010 Mar 13;368(1914):1141-62. doi: 10.1098/rsta.2009.0226.
In this article, we present a summary of the current status of the study of the transport of electrons confined to one dimension in very low disorder GaAs-AlGaAs heterostructures. By means of suitably located gates and application of a voltage to 'electrostatically squeeze' the electronic wave functions, it is possible to produce a controllable size quantization and a transition from two-dimensional transport. If the length of the electron channel is sufficiently short, then transport is ballistic and the quantized subbands each have a conductance equal to the fundamental quantum value 2e(2)/h, where the factor of 2 arises from the spin degeneracy. This mode of conduction is discussed, and it is shown that a number of many-body effects can be observed. These effects are discussed as in the spin-incoherent regime, which is entered when the separation of the electrons is increased and the exchange energy is less than kT. Finally, results are presented in the regime where the confinement potential is decreased and the electron configuration relaxes to minimize the electron-electron repulsion to move towards a two-dimensional array. It is shown that the ground state is no longer a line determined by the size quantization alone, but becomes two distinct rows arising from minimization of the electrostatic energy and is the precursor of a two-dimensional Wigner lattice.
在本文中,我们总结了目前对非常低无序 GaAs-AlGaAs 异质结构中限制在一维的电子输运的研究现状。通过适当位置的门和施加电压来“静电压缩”电子波函数,可以产生可控的尺寸量子化和从二维输运到一维输运的转变。如果电子通道的长度足够短,则输运是弹道的,并且每个量子化子带的电导等于基本量子值 2e(2)/h,其中 2 的因子来自于自旋简并。本文讨论了这种传导模式,并表明可以观察到许多多体效应。这些效应在自旋非相干区域讨论,当电子的分离增加并且交换能小于 kT 时,就会进入自旋非相干区域。最后,在约束势降低且电子构型弛豫以最小化电子-电子排斥以朝向二维阵列移动的区域中呈现结果。结果表明,基态不再仅仅由尺寸量子化决定的线,而是由于静电能最小化而变成两个不同的行,这是二维威格纳晶格的前兆。