Author:
Luo Dong-Sheng,Lin Li-Hung,Su Yi-Chun,Wang Yi-Ting,Peng Zai Fong,Lo Shun-Tsung,Chen Kuang Yao,Chang Yuan-Huei,Wu Jau-Yang,Lin Yiping,Lin Sheng-Di,Chen Jeng-Chung,Huang Chun-Feng,Liang Chi-Te
Abstract
Abstract
A delta-doped quantum well with additional modulation doping may have potential applications. Utilizing such a hybrid system, it is possible to experimentally realize an extremely high two-dimensional electron gas (2DEG) density without suffering inter-electronic-subband scattering. In this article, the authors report on transport measurements on a delta-doped quantum well system with extra modulation doping. We have observed a 0-10 direct insulator-quantum Hall (I-QH) transition where the numbers 0 and 10 correspond to the insulator and Landau level filling factor ν = 10 QH state, respectively. In situ titled-magnetic field measurements reveal that the observed direct I-QH transition depends on the magnetic component perpendicular to the quantum well, and the electron system within this structure is 2D in nature. Furthermore, transport measurements on the 2DEG of this study show that carrier density, resistance and mobility are approximately temperature (T)-independent over a wide range of T. Such results could be an advantage for applications in T-insensitive devices.
Publisher
Springer Science and Business Media LLC
Subject
Condensed Matter Physics,General Materials Science
Cited by
12 articles.
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