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Spin-polarized transport in adiabatic quantum point contact with strong Rashba spin-orbit interaction

机译:具有强Rashba自旋轨道相互作用的绝热量子点接触中的自旋极化输运

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We first report 0.5(2e~2/h) conductance quantization in adiabatic quantum point contacts (QPCs) fabricated at high In-content InGaAs/InAlAs single heterojunctions under no magnetic field. This quantization seems difficult to understand, since the spin one-dimensional (1D) subbands in the QPCs are generally degenerated when B=0. However, this observation is reproducible in various QPC samples with different dimensions but not likely so definite as the conductance quantization in usual QPCs. It is noted that this particular heterojunction 2DEG is found to have high electron mobility of < 5 x 10~5 cm~2/Vs as well as very large Rashba spin-orbit (SO) coupling constant of < 35 x 10~(12) eVm. So that, the QPCs realized here can be regarded as a kind of Tomonaga-Luttinger wire with an enhanced Rashba interaction. In such a case, a mode coupling between the Rashba splitting 1D subbands gives rise to a spin-polarized transport in each ± k direction. This theory could be the one plausible candidate to explain the 0.5(2e~2/h) conductance quantization observed here in the adiabatic QPC. This finding would be developed to novel spin-filters or spin-directional coupler devices based on nonmagnetic semiconductors.
机译:我们首先报道了在高In-In含量的InGaAs / InAlAs单异质结在无磁场条件下制造的绝热量子点接触(QPC)中的0.5(2e〜2 / h)电导率量化。由于QPC中的自旋一维(1D)子带通常在B = 0时退化,因此这种量化似乎难以理解。但是,这种观察结果在具有不同尺寸的各种QPC样本中是可重现的,但不像常规QPC中的电导量化那样确定。注意,发现这种特殊的异质结2DEG具有<5 x 10〜5 cm〜2 / Vs的高电子迁移率,以及非常大的Rashba自旋轨道(SO)耦合常数<35 x 10〜(12)。 eVm。因此,此处实现的QPC可以视为具有增强的Rashba交互作用的Tomonaga-Luttinger导线。在这种情况下,Rashba分裂1D子带之间的模式耦合会在每个±k方向上引起自旋极化传输。该理论可能是解释在绝热QPC中观察到的0.5(2e〜2 / h)电导量化的一个合理的候选者。该发现将被开发为基于非磁性半导体的新型自旋滤波器或自旋方向耦合器器件。

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