Abstract
In this work the author investigate the subband nature of multiple quantum well structures by photoconductance spectroscopy, optical absorption measurements and tunneling experiments. Both interband and intraband transitions have been studied. The work is aimed at making an infrared detector using wide band gap semiconductors. 14 refs.
Citation Formats
Helgesen, P.
Electrical and optical properties of multiple quantum well structures and their applications to infrared detectors.
Norway: N. p.,
1992.
Web.
Helgesen, P.
Electrical and optical properties of multiple quantum well structures and their applications to infrared detectors.
Norway.
Helgesen, P.
1992.
"Electrical and optical properties of multiple quantum well structures and their applications to infrared detectors."
Norway.
@misc{etde_10153062,
title = {Electrical and optical properties of multiple quantum well structures and their applications to infrared detectors}
author = {Helgesen, P}
abstractNote = {In this work the author investigate the subband nature of multiple quantum well structures by photoconductance spectroscopy, optical absorption measurements and tunneling experiments. Both interband and intraband transitions have been studied. The work is aimed at making an infrared detector using wide band gap semiconductors. 14 refs.}
place = {Norway}
year = {1992}
month = {Apr}
}
title = {Electrical and optical properties of multiple quantum well structures and their applications to infrared detectors}
author = {Helgesen, P}
abstractNote = {In this work the author investigate the subband nature of multiple quantum well structures by photoconductance spectroscopy, optical absorption measurements and tunneling experiments. Both interband and intraband transitions have been studied. The work is aimed at making an infrared detector using wide band gap semiconductors. 14 refs.}
place = {Norway}
year = {1992}
month = {Apr}
}