期刊论文详细信息
Interaction effects in a one-dimensional constriction
Article
关键词: QUANTUM POINT CONTACTS;    2D ELECTRON-GAS;    QUANTIZED CONDUCTANCE;    NONLINEAR CONDUCTANCE;    BALLISTIC TRANSPORT;    SPIN-POLARIZATION;    MAGNETIC-FIELD;    HETEROJUNCTION;    FLUCTUATIONS;    SUBBANDS;   
DOI  :  10.1103/PhysRevB.58.4846
来源: SCIE
【 摘 要 】

We have investigated the transport properties of one-dimensional (1D) constrictions defined by split-gates in high quality GaAs/AlxGa1-xAs heterostructures. In addition to the usual quantized conductance plateaus, the equilibrium conductance shows a structure close to 0.7(2e(2)/h), and in consolidating our previous work [K. J. Thomas at al., Phys. Rev. Lett. 77, 135 (1996)] this 0.7 structure has been investigated in a wide range of samples as a function of temperature, carrier density, in-plane magnetic field B-parallel to, and source-drain voltage V-sd. We show that the 0.7 structure is not due to transmission or resonance effects, nor does it arise from the asymmetry of the heterojunction in the growth direction. All the 1D subbands show Zeeman splitting at high B-parallel to and in the wide channel limit the g factor is \g\approximate to 0.4, close to that of bulk GaAs. As the channel is progressively narrowed we measure an exchange-enhanced g factor. The measurements establish that the 0.7 structure is related to spin, and that electron-electron interactions become important for the last few conducting 1D subbands.

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