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The all-diode-pumped laser system POLARIS——an experimentalist's tool generating ultra-high contrast pulses with high energy 被引量:1

The all-diode-pumped laser system POLARIS——an experimentalist's tool generating ultra-high contrast pulses with high energy
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摘要 The development,the underlying technology and the current status of the fully diode-pumped solid-state laser system POLARIS is reviewed.Currently,the POLARIS system delivers 4 J energy,144 fs long laser pulses with an ultra-high temporal contrast of 5 × 1012 for the ASE,which is achieved using a so-called double chirped-pulse amplification scheme and cross-polarized wave generation pulse cleaning.By tightly focusing,the peak intensity exceeds 3.5 × 1020 W cm-2.These parameters predestine POLARIS as a scientific tool well suited for sophisticated experiments,as exemplified by presenting measurements of accelerated proton energies.Recently,an additional amplifier has been added to the laser chain.In the ramp-up phase,pulses from this amplifier are not yet compressed and have not yet reached the anticipated energy.Nevertheless,an output energy of 16.6 J has been achieved so far. The development,the underlying technology and the current status of the fully diode-pumped solid-state laser system POLARIS is reviewed.Currently,the POLARIS system delivers 4 J energy,144 fs long laser pulses with an ultra-high temporal contrast of 5 × 1012 for the ASE,which is achieved using a so-called double chirped-pulse amplification scheme and cross-polarized wave generation pulse cleaning.By tightly focusing,the peak intensity exceeds 3.5 × 1020 W cm-2.These parameters predestine POLARIS as a scientific tool well suited for sophisticated experiments,as exemplified by presenting measurements of accelerated proton energies.Recently,an additional amplifier has been added to the laser chain.In the ramp-up phase,pulses from this amplifier are not yet compressed and have not yet reached the anticipated energy.Nevertheless,an output energy of 16.6 J has been achieved so far.
出处 《High Power Laser Science and Engineering》 SCIE CAS 2014年第3期5-11,共7页 高功率激光科学与工程(英文版)
基金 funding from the European Commission’s (EC) 7th Framework Programme (LASERLAB-EUROPE,grant no.228334) from the Bundesministerium fr Bildung und Forschung (BMBF) (03ZIK445 and 03Z1H531)
关键词 design high power LASER LASER amplifiers LASER plasmas INTERACTION LASER systems modelling optimization ultra-intense ULTRASHORT pulse LASER INTERACTION with matter design high power laser laser amplifiers laser plasmas interaction laser systems modelling optimization ultra-intense ultrashort pulse laser interaction with matter
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