Experimental evidence for a two-dimensional quantized Hall insulator

  • Hilke, M; 
  • Shahar, D; 
  • Song, SH; 
  • Tsui, DC; 
  • Xie, YH; 
  • 외 1명
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초록

The general theoretical definition of an insulator is a material in which the conductivity vanishes at the absolute zero of temperature. In classical insulators, such as materials with a band gap, vanishing conductivities lead to diverging resistivities. But other insulators can show more complex behaviour, particularly in the presence of a high magnetic field, where different components of the resistivity tensor can display different behaviours: the magnetoresistance diverges as the temperature approaches absolute zero, but the transverse (Hall) resistance remains finite. Such a system is known as a Hall insulator(1). Here we report experimental evidence for a quantized(2) Hall insulator in a two-dimensional electron system-confined in a semiconductor quantum well. The Hall resistance is quantized in the quantum unit of resistance h/e(2),, where h is Planck's constant and e the electronic charge. At low fields, the sample reverts to being a normal Hall insulator.

키워드

2-DIMENSIONAL ELECTRON-SYSTEM; TRANSITION; LIQUID; COEFFICIENT; DUALITY; PHASE; GAS
제목
Experimental evidence for a two-dimensional quantized Hall insulator
저자
Hilke, M; Shahar, D; Song, SH; Tsui, DC; Xie, YH; Monroe, D
DOI
10.1038/27160
발행일
1998-10
유형
Article
저널명
Nature
권
395
호
6703
페이지
675 ~ 677