Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group

A New Wavelength Selective FIR Detector with High Gain and Low Dark Currents

Not Accessible

Your library or personal account may give you access

Abstract

Some time ago a new FIR detector has been demonstrated by Levine, Choi, Bethea, Walker and Malik, which used the wavelength selective intersubband absorption and subsequent emission of electrons in a multiple quantum well (MQW) structure with an electric field applied in the direction normal to the layers /1/. A major drawback of this detector is the fact, that it is a majority carrier device. The photon-assisted field emission of electrons from the individual QW's causes positive space charge in the structure. In order to avoid a time- and optical-power dependent space charge, resulting in undesirable effects similar to those of space charge limited currents, rather high dark currents are required in order to maintain macroscopic neutrality in the system.

© 1989 Optical Society of America

PDF Article
More Like This
Simple, very low dark current, planar long-wavelength avalanche photodiode

Y. LIU, STEPHEN R. FORREST, V. S. BAN, K. M. WOODRUFF, J. COLOSI, G. C. ERIKSON, M. J. LANGE, and GREGORY H. OLSEN
THK4 Optical Fiber Communication Conference (OFC) 1989

Optical Detection of Resonant Tunneling of Electrons in Quantum Wells

G. Livescu, A M. Fox, T. Sizer, W.H. Knox, and D.A.B. Miller
DS247 Picosecond Electronics and Optoelectronics (UEO) 1989

Optical Detection of Resonant Tunneling of Electrons in Quantum Wells

C. Livescu, A.M. Fox, T. Sizer, W.H. Knox, and D.A.B. Miller
WC2 Quantum Wells for Optics and Opto-Electronics (QWOE) 1989

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.