Attosecond and XUV Spectroscopy: Ultrafast Dynamics and by Thomas Schultz, Marc Vrakking

By Thomas Schultz, Marc Vrakking

This booklet presents primary wisdom within the fields of attosecond technology and unfastened electron lasers, in response to the perception that the extra improvement of either disciplines can enormously reap the benefits of mutual publicity and interplay among the 2 groups. With appreciate to the interplay of excessive depth lasers with subject, it covers ultrafast lasers, high-harmonic new release, attosecond pulse iteration and characterization. different chapters evaluate strong-field physics, loose electron lasers and experimental instrumentation. Written in a simple obtainable sort, the ebook is aimed toward graduate and postgraduate scholars so that it will aid the clinical education of early degree researchers during this rising box. exact emphasis is put on the sensible technique of creating experiments, permitting younger researchers to advance a variety of medical talents with a purpose to speed up the advance of spectroscopic recommendations and their implementation in medical experiments. The editors are managers of a study community dedicated to the schooling of younger scientists, and this publication concept relies on a summer time university geared up via the ATTOFEL community.

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Opt. , 18 (3), 2836–2841. org/abstract. URI=oe-18-3-2836. , and Veisz, L. (2010) Investigation of two-beampumped noncollinear optical parametric chirped-pulse amplification for the generation of few-cycle light 121 122 123 124 125 126 127 128 pulses. Opt. 18. 004170. , and Tünnermann, A. (2011) High-repetition-rate sub-5-fs pulses with 12 GW peak power from fiber-amplifier-pumped optical parametric chirped-pulse amplification. Opt. 36. 000313. , and Morgner, U. 5 octaves from vis to NIR. Opt. , 20 (3), 3076– 3081.

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Top. , 6, 1287–1296. , and Zaldo, C. (2008) Continuous-wave tunable and femtosecond mode-locked laser operation of Yb:NaY(MoO4 )2 . J. Opt. Soc. 25. 001341. , and Siebert, T. (2008) Poor man’s source for sub 7 fs: a simple route to ultrashort laser pulses and their full characterization. Opt. , 16, 18910–18921. , and Petermann, K. (2010) Solid-state lasers: status and future (invited). J. Opt. Soc. Am. 27. 000B93. , and Erbert, G. (2010) Diode-pumped mode-locked Yb:LuScO3 single crystal laser with 74 fs pulse duration.

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