1997
DOI: 10.1063/1.118967
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Cyclotron resonance and quantum Hall effect studies of the two-dimensional electron gas confined at the GaN/AlGaN interface

Abstract: We report on high magnetic fields (up to 40 T) cyclotron resonance, quantum Hall effect and Shubnikov-de-Hass measurements in high frequency transistors based on Si-doped GaN–AlGaN heterojunctions. A simple way of precise modelling of the cyclotron absorption in these heterojunctions is presented. We clearly establish two-dimensional electrons to be the dominant conducting carriers and determine precisely their in-plane effective mass to be 0.230±0.005 of the free electron effective mass. The increase of the e… Show more

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Cited by 81 publications
(46 citation statements)
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“…5. The points with the reference marks [15][16][17][21][22][23]28,29 correspond to experimental data, taken from the literature and the points with the letter marks A, B, and C represent our experimental data. The solid line is the fit of the 2DEG effective mass dependence on the probability of wave-function penetration into the barrier of the studied AlGaN/GaN heterostructures.…”
Section: The Effect Of Wave-function Hybridizationmentioning
confidence: 99%
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“…5. The points with the reference marks [15][16][17][21][22][23]28,29 correspond to experimental data, taken from the literature and the points with the letter marks A, B, and C represent our experimental data. The solid line is the fit of the 2DEG effective mass dependence on the probability of wave-function penetration into the barrier of the studied AlGaN/GaN heterostructures.…”
Section: The Effect Of Wave-function Hybridizationmentioning
confidence: 99%
“…We determined the probabilities of the 2DEG wavefunction penetration into the barrier by self-consistent calculation for our AlGaN/GaN samples and for HEMT GaNbased heterostructures reported in the literature [15][16][17][21][22][23]28,29 containing all necessary information for the detailed simulation.…”
Section: The Effect Of Wave-function Hybridizationmentioning
confidence: 99%
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“…6 However, the precise measurement of the larger electron effective mass in GaN requires large magnetic fields which are typically only available at national-scale facilities. 7,8 Recently, compact pulsed magnets have been developed, which can provide the high magnetic fields (up to 30 T) that were previously only accessible at national-scale facilities on a table-top in a laboratory environment. 9 There have also been several reports of cyclotron resonance spectrometers being developed that combine pulsed magnetic fields with broadband laser-based terahertz radiation sources.…”
mentioning
confidence: 99%