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Measurement of Coherence Decay in GaMnAs Using Femtosecond Four-wave Mixing

The application of femtosecond four-wave mixing to the study of fundamental properties of diluted magnetic semiconductors ((s,p)-d hybridization, spin-flip scattering) is described, using experiments on GaMnAs as a prototype III-Mn-V system.  Spectrally-resolved and time-resolved experimental config...

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Autores principales: Webber, Daniel, de Boer, Tristan, Yildirim, Murat, March, Sam, Mathew, Reuble, Gamouras, Angela, Liu, Xinyu, Dobrowolska, Margaret, Furdyna, Jacek, Hall, Kimberley
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MyJove Corporation 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4028863/
https://www.ncbi.nlm.nih.gov/pubmed/24326982
http://dx.doi.org/10.3791/51094
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author Webber, Daniel
de Boer, Tristan
Yildirim, Murat
March, Sam
Mathew, Reuble
Gamouras, Angela
Liu, Xinyu
Dobrowolska, Margaret
Furdyna, Jacek
Hall, Kimberley
author_facet Webber, Daniel
de Boer, Tristan
Yildirim, Murat
March, Sam
Mathew, Reuble
Gamouras, Angela
Liu, Xinyu
Dobrowolska, Margaret
Furdyna, Jacek
Hall, Kimberley
author_sort Webber, Daniel
collection PubMed
description The application of femtosecond four-wave mixing to the study of fundamental properties of diluted magnetic semiconductors ((s,p)-d hybridization, spin-flip scattering) is described, using experiments on GaMnAs as a prototype III-Mn-V system.  Spectrally-resolved and time-resolved experimental configurations are described, including the use of zero-background autocorrelation techniques for pulse optimization.  The etching process used to prepare GaMnAs samples for four-wave mixing experiments is also highlighted.  The high temporal resolution of this technique, afforded by the use of short (20 fsec) optical pulses, permits the rapid spin-flip scattering process in this system to be studied directly in the time domain, providing new insight into the strong exchange coupling responsible for carrier-mediated ferromagnetism.  We also show that spectral resolution of the four-wave mixing signal allows one to extract clear signatures of (s,p)-d hybridization in this system, unlike linear spectroscopy techniques.   This increased sensitivity is due to the nonlinearity of the technique, which suppresses defect-related contributions to the optical response. This method may be used to measure the time scale for coherence decay (tied to the fastest scattering processes) in a wide variety of semiconductor systems of interest for next generation electronics and optoelectronics.
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spelling pubmed-40288632014-05-23 Measurement of Coherence Decay in GaMnAs Using Femtosecond Four-wave Mixing Webber, Daniel de Boer, Tristan Yildirim, Murat March, Sam Mathew, Reuble Gamouras, Angela Liu, Xinyu Dobrowolska, Margaret Furdyna, Jacek Hall, Kimberley J Vis Exp Physics The application of femtosecond four-wave mixing to the study of fundamental properties of diluted magnetic semiconductors ((s,p)-d hybridization, spin-flip scattering) is described, using experiments on GaMnAs as a prototype III-Mn-V system.  Spectrally-resolved and time-resolved experimental configurations are described, including the use of zero-background autocorrelation techniques for pulse optimization.  The etching process used to prepare GaMnAs samples for four-wave mixing experiments is also highlighted.  The high temporal resolution of this technique, afforded by the use of short (20 fsec) optical pulses, permits the rapid spin-flip scattering process in this system to be studied directly in the time domain, providing new insight into the strong exchange coupling responsible for carrier-mediated ferromagnetism.  We also show that spectral resolution of the four-wave mixing signal allows one to extract clear signatures of (s,p)-d hybridization in this system, unlike linear spectroscopy techniques.   This increased sensitivity is due to the nonlinearity of the technique, which suppresses defect-related contributions to the optical response. This method may be used to measure the time scale for coherence decay (tied to the fastest scattering processes) in a wide variety of semiconductor systems of interest for next generation electronics and optoelectronics. MyJove Corporation 2013-12-03 /pmc/articles/PMC4028863/ /pubmed/24326982 http://dx.doi.org/10.3791/51094 Text en Copyright © 2013, Journal of Visualized Experiments http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. To view a copy of this license, visithttp://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Physics
Webber, Daniel
de Boer, Tristan
Yildirim, Murat
March, Sam
Mathew, Reuble
Gamouras, Angela
Liu, Xinyu
Dobrowolska, Margaret
Furdyna, Jacek
Hall, Kimberley
Measurement of Coherence Decay in GaMnAs Using Femtosecond Four-wave Mixing
title Measurement of Coherence Decay in GaMnAs Using Femtosecond Four-wave Mixing
title_full Measurement of Coherence Decay in GaMnAs Using Femtosecond Four-wave Mixing
title_fullStr Measurement of Coherence Decay in GaMnAs Using Femtosecond Four-wave Mixing
title_full_unstemmed Measurement of Coherence Decay in GaMnAs Using Femtosecond Four-wave Mixing
title_short Measurement of Coherence Decay in GaMnAs Using Femtosecond Four-wave Mixing
title_sort measurement of coherence decay in gamnas using femtosecond four-wave mixing
topic Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4028863/
https://www.ncbi.nlm.nih.gov/pubmed/24326982
http://dx.doi.org/10.3791/51094
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