期刊文献+
共找到1篇文章
< 1 >
每页显示 20 50 100
Implementation of a spherical double-plasma-mirror telescope for a multi-petawatt laser
1
作者 Valeriu Scutelnic Martin Speicher +44 位作者 Alice Fazzini Petru Ghenuche Domenico Doria Alexandru Ailincutei Bruno Gonzalez-Izquierdo Theodor Asavei Septimiu Balascuta John Jasper Bekx Petrisor Gabriel Bleotu Giordano Bodini Carafino Braganza Alexandra Brodersen Alessandro Cavalli Olivier Chalus Gabriel Cojocaru Jadyn D'mello Ioan Dancus Christophe Derycke floris deurvorst Michael Ehrmanntraut Dan Gengenbach Dan Ghita Lorenzo Giuffrida Marius Gugiu Marc Guenther Oscar Juina Kyle Kenney Sumit Kumar Mariana Martinez-Pacheco Ignacio Minguez Bacho Saidbek Norbaev Nathaniel Poetranto Hartmut Ruhl Emanuel Schork Markus Stein Sven Steinke Anda-Maria Talposi Antonia Toma Marco Tosca Ashwini Ubarhande Lidia Vasescu Erhard Gaul Daniel Rivas Marius Schollmeier Georg Korn 《High Power Laser Science and Engineering》 2025年第6期190-197,共8页
High-power laser beamlines typically operate with fixed focusing conditions,limiting the focal spot size and peak intensity.To mitigate these restrictions,prior studies used curved plasma mirrors to adjust the F-numbe... High-power laser beamlines typically operate with fixed focusing conditions,limiting the focal spot size and peak intensity.To mitigate these restrictions,prior studies used curved plasma mirrors to adjust the F-number to a specific value.Here,a double-plasma-mirror(DPM) system including spherical optics in a telescope configuration is implemented to adapt the F-number of a multi-petawatt(PW) laser beam resulting in adjustability within a range of intensities.The system is optimized to minimize focal aberrations.A dedicated imaging system is used to evaluate focus quality and the DPM reflectivity at the multi-PW level.Temporal contrast enhancement of the reflected beam is additionally demonstrated,as evidenced by higher particle yield and proton kinetic energy from nanometer-thick foils,compared to results without DPMs.These findings enable multi-PW laser facilities to explore more extreme laserplasma conditions that require ultra-high temporal contrast and intensity,while expanding their capabilities in intensity adjustment beyond designed specifications. 展开更多
关键词 aberration correction double-plasma mirror high-power diagnostic spherical mirrors TELESCOPE
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部