Fr. 135.00

Third-Generation Femtosecond Technology

English · Paperback / Softback

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Description

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This thesis offers a thorough and informative study of high-power, high-energy optical parametric chirped pulse amplifications systems, the foundation of the next generation of femtosecond laser technology. Starting from the basics of the linear processes involved and the essential design considerations, the author clearly and systematically describes the various prerequisites of the nonlinear optical systems expected to drive attosecond physics in the coming decade. In this context, he gives an overview of methods for generating the broadband and carrier-envelope-phase stable seed pulses necessary for producing controlled electric-field waveforms in the final system; provides a guide to handling the high-power, high-energy pump lasers required to boost the pulse energy to the desired operating range; describes the design of the nonlinear optical system used to perform the amplification, including modes of operation for ultra-broadband infrared-visible pulses or narrowband (yet still ultrafast) pulses tunable over multiple octaves; and finally presents a prospective high-energy field synthesizer based upon these techniques. As such, this work is essential reading for all scientists interested in utilizing the newest generation of ultrafast systems.

List of contents

How to Amplify Photons.- Broadband Seed Generation.- Regenerative Amplifiers.- Experimental OPCPA.- Design of a Multi-Terawatt Field Synthesizer (LWS-Pro).- Conclusion and Outlook.

Summary

This thesis offers a thorough and informative study of high-power, high-energy optical parametric chirped pulse amplifications systems, the foundation of the next generation of femtosecond laser technology. Starting from the basics of the linear processes involved and the essential design considerations, the author clearly and systematically describes the various prerequisites of the nonlinear optical systems expected to drive attosecond physics in the coming decade. In this context, he gives an overview of methods for generating the broadband and carrier-envelope-phase stable seed pulses necessary for producing controlled electric-field waveforms in the final system; provides a guide to handling the high-power, high-energy pump lasers required to boost the pulse energy to the desired operating range; describes the design of the nonlinear optical system used to perform the amplification, including modes of operation for ultra-broadband infrared-visible pulses or narrowband (yet still ultrafast) pulses tunable over multiple octaves; and finally presents a prospective high-energy field synthesizer based upon these techniques. As such, this work is essential reading for all scientists interested in utilizing the newest generation of ultrafast systems.

Product details

Authors Hanieh Fattahi
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 01.01.2016
 
EAN 9783319369907
ISBN 978-3-31-936990-7
No. of pages 140
Dimensions 155 mm x 8 mm x 235 mm
Weight 256 g
Illustrations XVIII, 140 p.
Series Springer Theses
Springer Theses
Subjects Natural sciences, medicine, IT, technology > Physics, astronomy > Electricity, magnetism, optics

Laser, B, Lasers, Quantum Optics, Optical and Electronic Materials, Quantum physics (quantum mechanics & quantum field theory), Physics and Astronomy, Optical physics, Electronic materials, Electronic devices & materials, Optical Materials, Photonics, Applied optics, Optics, Lasers, Photonics, Optical Devices

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