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Titlebook: Enhancement Cavities for the Generation of Extreme Ultraviolet and Hard X-Ray Radiation; Henning Carstens Book 2018 Springer International

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Design of High-Power Enhancement Cavities,bations. In Sect. ., a metric for the misalignment sensitivity of enhancement cavities is introduced and investigated for the three cavity designs. The chapter closes with a discussion about the possibilities of astigmatic compensation in enhancement cavities in Sect. . with purely reflective optics.
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Megawatt-Level Average Power Enhancement Cavities for Ultrashort Pulses,in Sect. ., experiments targeting the power scaling of enhancement cavities were conducted, which are described in Sect. .. The achievable power level in these experiments is limited by aberrations, which are examined in Sect. .. The chapter is based on Carstens et al., (Opt Lett 39, 2014, [.]).
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Theoretical Background,beams as a solution of the paraxial wave equation are introduced. Based on this, stable optical resonators and their eigenmodes are discussed in Sect. .. The energy relations of passive optical resonators, so called enhancement cavities, in the steady-state follow in Sect. .. As high powers play a c
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Design of High-Power Enhancement Cavities,ies are developed. Three example cavities are discussed in Sect. .. They can be employed for applications such as high-harmonic generation or inverse-Compton scattering, whose specific requirements are discussed in Sect. .. One important aspect for all these applications is robustness against pertur
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Summary and Outlook,ement of laser pulses to ultra high average powers is beneficial for all light-matter interactions with small cross-section, either for spectroscopy (detection) or for frequency conversion (generation). The results from this thesis have implications in particular for two of them, namely inverse-Comp
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