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Master's Dissertation
DOI
https://doi.org/10.11606/D.85.2009.tde-05112009-091804
Document
Author
Full name
Thiago da Silva Cordeiro
Institute/School/College
Knowledge Area
Date of Defense
Published
São Paulo, 2009
Supervisor
Committee
Samad, Ricardo Elgul (President)
Misoguti, Lino
Wetter, Niklaus Ursus
Title in Portuguese
Estudo da propagação de pulsos Laser através de um sistema amplificador de pulsos ultracurtos para o desenvolvimento de um alargador temporal do tipo Öffner
Keywords in Portuguese
Compressor tipo Öffner
CPA
dispersão
femtossegundos
Pulsos lasers ultracurtos
Abstract in Portuguese
Foi feito o estudo da propagação de pulsos laser através de um sistema amplificador de pulsos ultracurtos com meios dispersivos e modificadores de banda espectral. Deu-se ênfase à concepção de um alargador (ou alongador) de pulsos ultracurtos para substituir o já existente no sistema CPA híbrido de Ti:Safira/Cr:LiSAF em operação no Centro de Lasers e Aplicações do IPEN/CNEN-SP. Fez-se o desenvolvimento teórico e o estudo de um alongador temporal do tipo Öffner, livre de aberrações esféricas, objetivando obter uma razão de alargamento superior à existente no sistema em operação. Estudou-se também a influência das componentes de fase do sistema na duração final dos pulsos amplificados, e o sistema atual teve seus componentes limitantes de largura de banda mapeados, com o objetivo de conhecer as condições nas quais um novo alongador temporal deve ser inserido no sistema. Com base nessas medidas, foram implementadas rotinas computacionais para se determinar as consequências da passagem de um pulso por um componente limitante de largura de banda.
Title in English
Study of Laser pulses propagation through an ultrashort pulse amplifying systems for the development of an Öffner temporal stretcher
Keywords in English
Compressor tipo Öffner
CPA
Dispersão
femtossegundos
Pulsos lasers ultracurtos
Abstract in English
The study of laser pulses propagation through an ultrashort pulses amplifying system containing dispersive and spectral modifying media was performed. The study emphasis was the development of an ultrashort pulse stretcher to replace the one inside a hybrid Ti:Sapphire/Cr:LiSAF CPA system operating at the Center for Lasers and Applications at IPEN/CNEN-SP. A spherical aberration free Öffner stretcher was theoretically studied, aiming to obtain a stretching ratio larger than the one available in our system. The influence of the phase components in the amplified pulse final duration was also studied, and the bandwidth limiting elements of the system in operation were mapped, with the purpose of determining the conditions under which a new stretcher should be implemented. Based on the actual measurements, computing routines were implemented in order to determine the consequences of an ultrashort pulse travelling through a bandwidth limiting component.
 
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Publishing Date
2009-11-27
 
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