Optical Parametric Generation and Amplification

Optical Parametric Generation and Amplification
Title Optical Parametric Generation and Amplification PDF eBook
Author Jing-Yuan Zhang
Publisher Routledge
Total Pages 56
Release 2019-01-22
Genre Technology & Engineering
ISBN 1351426834

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This volume considers optical parametric generation and amplification (OPG/OPA), as a means for producing a tunable optical parametric device. It reviews the OPA/OPG systems using various crystals pumped by lasers at various frequencies with pulse duration ranging from picoseconds to femtoseconds. Part two covers the theoretical background for design of an OPA/OPG system, using two newly discovered nonlinear crystals. Experimental design considerations are discussed in section three, including the section of nonlinear crystals, pumping sources and optical configurations. In section four, the experimental results obtained are compared with the theoretical calculations.

Generation and Parametric Amplification of Few‐Cycle Light Pulses at Relativistic Intensities

Generation and Parametric Amplification of Few‐Cycle Light Pulses at Relativistic Intensities
Title Generation and Parametric Amplification of Few‐Cycle Light Pulses at Relativistic Intensities PDF eBook
Author Alexander Kessel
Publisher Springer
Total Pages 165
Release 2018-06-28
Genre Science
ISBN 3319928430

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This book reports on the development of a pioneering light source architecture of the so-called Petawatt Field Synthesizer (PFS) system, which is based on short-pulse pumped, optical parametric chirped pulse amplification (OPCPA), driven by a homemade, 1-ps diode-pumped Yb:YAG. At a few-cycle pulse duration of the amplified pulses, this architecture yields record levels of peak power and temporal contrast, the latter boasting a 100-times faster rise time from the noise level to peak intensity of the pulse compared to conventional laser systems. This allows investigation of the true laser–solid interaction without premature plasma expansion and without lossy pulse cleaning by e.g. plasma mirrors. The book describes several concepts for the generation of broadband, high-energy and high-contrast seed pulses, as well as the OPCPA development, few-cycle pulse compression and contrast characterization in a concise and insightful manner. The theory chapter serves as an excellent and accessible primer on OPCPA and other nonlinear interactions, while the experimental parts provide an excellent description of the challenges of developing such a novel architecture and some of the innovative solutions to overcome them.

Fiber Optical Parametric Amplifiers, Oscillators and Related Devices

Fiber Optical Parametric Amplifiers, Oscillators and Related Devices
Title Fiber Optical Parametric Amplifiers, Oscillators and Related Devices PDF eBook
Author Michel E. Marhic
Publisher Cambridge University Press
Total Pages 379
Release 2008
Genre Technology & Engineering
ISBN 0521861020

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This 2007 book comprehensively covers the theory, techniques and practice of all types of fiber OPAs and related devices.

Third-Generation Femtosecond Technology

Third-Generation Femtosecond Technology
Title Third-Generation Femtosecond Technology PDF eBook
Author Hanieh Fattahi
Publisher Springer
Total Pages 150
Release 2015-08-28
Genre Science
ISBN 3319200259

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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.

Optical Parametric Generation and Amplification of Intense Tunable Femtosecond Pulses by a Regeneratively-amplified Ti

Optical Parametric Generation and Amplification of Intense Tunable Femtosecond Pulses by a Regeneratively-amplified Ti
Title Optical Parametric Generation and Amplification of Intense Tunable Femtosecond Pulses by a Regeneratively-amplified Ti PDF eBook
Author
Publisher
Total Pages 4
Release 1994
Genre
ISBN

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The design for a optical parametric generator - optical parametric amplifier using KTP pumped by a regeneratively-amplified Ti:Sapphire laser is given. The frequency-doubled, microjoule-energy femtosecond pulses are tunable from 550 to 840 nm.

Guided Wave Optical Components and Devices

Guided Wave Optical Components and Devices
Title Guided Wave Optical Components and Devices PDF eBook
Author Bishnu P. Pal
Publisher Academic Press
Total Pages 467
Release 2010-07-19
Genre Technology & Engineering
ISBN 0080532713

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Guided Wave Optical Components and Devices provides a comprehensive, lucid, and clear introduction to the world of guided wave optical components and devices. Bishnu Pal has collaborated with some of the greatest minds in optics to create a truly inclusive treatise on this contemporary topic. Written by leaders in the field, this book delivers cutting-edge research and essential information for professionals, researchers, and students on emerging topics like microstructured fibers, broadband fibers, polymer fiber components and waveguides, acousto-optic interactions in fibers, higher order mode fibers, nonlinear and parametric process in fibers, revolutionary effects of erbium doped and Raman fiber amplifiers in DWDM and CATV networks, all-fiber network branching component technology platforms like fused fiber couplers, fiber gratings, and side-polished fiber half-couplers, arrayed waveguides, optical MEMS, fiber sensing technologies including safety, civil structural health monitoring, and gyroscope applications. Accessible introduction to wide range of topics relating to established and emerging optical components Single-source reference for graduate students in optical engineering and newcomer practitioners, focused on components Extensive bibliographical information included so readers can get a broad introduction to a variety of optical components and their applications in an optical network

Towards Green Optical Fiber Amplification

Towards Green Optical Fiber Amplification
Title Towards Green Optical Fiber Amplification PDF eBook
Author Xing Xu
Publisher Open Dissertation Press
Total Pages
Release 2017-01-26
Genre
ISBN 9781361304587

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This dissertation, "Towards Green Optical Fiber Amplification: Distributed Parametric Amplifier and Its Applications" by Xing, Xu, 徐兴, was obtained from The University of Hong Kong (Pokfulam, Hong Kong) and is being sold pursuant to Creative Commons: Attribution 3.0 Hong Kong License. The content of this dissertation has not been altered in any way. We have altered the formatting in order to facilitate the ease of printing and reading of the dissertation. All rights not granted by the above license are retained by the author. Abstract: With the data explosion brought about by smartphones and tables during the past few years, how to keep these ever-increasing data in a stable, fast and green transmission and exchange environment is among the top problems for researchers in the communication field. As the backbone for the modern communication network, optical fiber communication is currently playing a key role in this on-going technology revolution. The optical amplifier is one of the most powerful tools of the optical communication system to cope with the data explosion. Distributed parametric amplification (DPA), with its potential green characteristics, i.e. noiseless, high-speed response, high power efficiency and wavelength flexibility, provides a promising amplification solution for the next generation of optical communication systems. As on specific type of optical parametric amplification (OPA), DPA is based on the combination of self-phase modulation (SPM), cross-phase modulation (XPM) and four-wave mixing (FWM) effects. DPA's main difference from OPA lies in the amplification medium. As DPA utilizes the most commonly adopted transmission fiber, i.e. single-mode fiber (SMF) and dispersion-shifted fiber (DSF), the signal transmission can thus be fulfilled simultaneously with the parametric amplification in the same optical fiber: DPA's configuration also brings another green feature, pump-power recycling, which further enhances the power efficiency of the communication system. As the fundamental study on DPA, first the gain spectrum is investigated. Both single- and two-pump DPAs are presented experimentally for WDM signals. In these experiments, residual pump power recycling is enabled by a concentrated photovoltaic (CPV) cells, Moreover, through experimental comparison with another important distributed amplification technology, distributed Raman amplification (DRA), DPA's advantages over DRA are demonstrated. When considering similar performance levels, DPA needs much lower pump power than DRA, which in return improves the system power efficiency. The performance of DPA cannot be judged unless it is assessed in more advanced application scenarios. Thus more advanced studies on DPA are conducted. The modulation format transparency is first presented with both phase (differential phase-shift keying (DPSK)) and intensity (on-off keying (OOK)) modulation formats, and our experimental results show the superiority of DPSK over traditional OOK. Furthermore, from the perspective of wavelength flexibility, we have demonstrated, for the first time to the best of our knowledge, a DPA system at the 1.3μm telecommunication window, which provides a potentially green amplification scheme at this transmission band. All these experiments, to a certain extent, certify the feasibility of DPA to become a green optical fiber amplifier. Finally, to demonstrate DPA's compatibility within a more complicated communication system, we propose a power-efficient UWB/DPA system for the "last mile." After experiments on photonic UWB pulse generation and the supporting DPA system, the hybrid UWB/DPA system is demonstrated with preliminary simulation results. My research efforts presented in this thesis all aim at the practical application of the DPA scheme into the next-generation of green communication systems. If further armed with the phase-sensitive configuration, DPA's potential as a green amplifier wi