VECSELs: Theory and experiment

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

Ultrafast nonequilibrium kinetic hole-burning in electron/hole carrier distributions dictates the outcome of short pulse generation in inverted semiconductor quantum wells, makes the gain picture redundant and agrees well with recent experimental observations.

Original languageEnglish (US)
Title of host publicationLaser Science, LS 2014
PublisherOptical Society of America (OSA)
ISBN (Print)1557522863
StatePublished - Oct 14 2014
EventLaser Science, LS 2014 - Tucson, United States
Duration: Oct 19 2014Oct 23 2014

Other

OtherLaser Science, LS 2014
CountryUnited States
CityTucson
Period10/19/1410/23/14

Fingerprint

Semiconductor quantum wells
Kinetics
Electrons
Experiments

ASJC Scopus subject areas

  • Electrical and Electronic Engineering
  • Electronic, Optical and Magnetic Materials

Cite this

Moloney, J. V., Kilen, I., Hader, J., & Koch, S. W. (2014). VECSELs: Theory and experiment. In Laser Science, LS 2014 Optical Society of America (OSA).

VECSELs : Theory and experiment. / Moloney, Jerome V; Kilen, Isak; Hader, Jorg; Koch, Stephan W.

Laser Science, LS 2014. Optical Society of America (OSA), 2014.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Moloney, JV, Kilen, I, Hader, J & Koch, SW 2014, VECSELs: Theory and experiment. in Laser Science, LS 2014. Optical Society of America (OSA), Laser Science, LS 2014, Tucson, United States, 10/19/14.
Moloney JV, Kilen I, Hader J, Koch SW. VECSELs: Theory and experiment. In Laser Science, LS 2014. Optical Society of America (OSA). 2014
Moloney, Jerome V ; Kilen, Isak ; Hader, Jorg ; Koch, Stephan W. / VECSELs : Theory and experiment. Laser Science, LS 2014. Optical Society of America (OSA), 2014.
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