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  1. Circuits and Devices Magazine
  2. Year : 1993 Volume : 9
  3. Issue 5
  4. Porous silicon sheds a new light on OEICs
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Year : 2006 Volume : 22
Year : 2005 Volume : 21
Year : 2004 Volume : 20
Year : 2003 Volume : 19
Year : 2002 Volume : 18
Year : 2001 Volume : 17
Year : 2000 Volume : 16
Year : 1999 Volume : 15
Year : 1998 Volume : 14
Year : 1997 Volume : 13
Year : 1996 Volume : 12
Year : 1995 Volume : 11
Year : 1994 Volume : 10
Year : 1993 Volume : 9
Issue 6
Issue 5
Simulation and modeling-modeling mixed systems with SPICE3
Designer's casebook-multivibrator runs at approximately= 1.5 V
Analog logic techniques steer around the noise
Porous silicon sheds a new light on OEICs
Limit current surges with +TC resistors
Practical LEOS application-applying gradient-index microlenses
Issue 4
Issue 3
Issue 2
Issue 1
Year : 1992 Volume : 8
Year : 1991 Volume : 7
Year : 1990 Volume : 6
Year : 1989 Volume : 5
Year : 1988 Volume : 4
Year : 1987 Volume : 3
Year : 1986 Volume : 2
Year : 1985 Volume : 1

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Porous silicon sheds a new light on OEICs

Content Provider IEEE Xplore Digital Library
Author Collins, R.T. Tischler, M.A.
Copyright Year 1988
Abstract Research efforts and developments in understanding the origin of the luminescence of porous silicon are reviewed. The fundamental characteristics of porous silicon are outlined. The quantum confinement model, which is used to characterize the luminescence from porous silicon, and porous silicon's optical properties, which show substantial instabilities, are discussed. The research into and applications of electroluminescence using porous silicon are also discussed.<>
Starting Page 22
Ending Page 28
Page Count 7
File Size 810545
File Format PDF
ISSN 87553996
Volume Number 9
Issue Number 5
Language English
Publisher Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Publisher Date 1993-09-01
Publisher Place U.S.A.
Access Restriction Subscribed
Rights Holder Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Subject Keyword Silicon Optoelectronic devices Luminescence Radiative recombination Photonic band gap Optical materials Semiconductor materials Photoluminescence Stimulated emission Optical devices
Content Type Text
Resource Type Article
Subject Instrumentation Electronic, Optical and Magnetic Materials Electrical and Electronic Engineering
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