JOURNAL ARTICLE

Electrical properties of GaAs Schottky diodes with embedded InAs self-assembled quantum dots

Abstract

The electrical properties of InAs self-assembled quantum dots (QDs), embedded in GaAs are investigated by low-frequency noise measurements using Au/n-GaAs Shottky diodes as a test device. The I-V characteristic deviates from the thermionic-emission diffusion theory showing an excess current in the low current region. The noise spectra show a 1/f-like behavior at frequencies up to 100 Hz and 1/f/sup 2/ behavior at higher frequencies. After decomposition of the different types of noise, from the g-r noise parameters we obtain the time constant and their density N/sub T/ of the single energy traps lying in the bulk of the n-GaAs capping layer. For the 1/f noise, the current spectral density is proportional to 1F/sup 2/ at low currents and proportional to IF for higher currents. The noise data are restricted in the current region where there is no influence of the series resistance of the diode. The 1/f noise data originating from interface states between the metal and n-GaAs capping layer, are analyzed.

Keywords:
Thermionic emission Schottky diode Noise (video) Quantum dot Optoelectronics Materials science Diode Flicker noise Equivalent series resistance Current density Condensed matter physics Gallium arsenide Electron Physics Noise figure Amplifier

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Citation History

Topics

Semiconductor Quantum Structures and Devices
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics
Semiconductor materials and interfaces
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics
Quantum and electron transport phenomena
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics

Related Documents

JOURNAL ARTICLE

1/f noise of GaAs Schottky diodes embedded with self-assembled InAs quantum dots

Jin Dong SongWon June ChoiIl Ki HanWoon-Jo ChoJung I. LeeYiling YuChong‐Hong PyunJeong-Hye KimJong‐In SongA. Chovet

Journal:   Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE Year: 2004 Vol: 5472 Pages: 432-432
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