Literature DB >> 26698475

Femtosecond resolution timing jitter correction on a TW scale Ti:sapphire laser system for FEL pump-probe experiments.

Marta Csatari Divall, Patrick Mutter, Edwin J Divall, Christoph P Hauri.   

Abstract

Intense ultrashort pulse lasers are used for fs resolution pump-probe experiments more and more at large scale facilities, such as free electron lasers (FEL). Measurement of the arrival time of the laser pulses and stabilization to the machine or other sub-systems on the target, is crucial for high time-resolution measurements. In this work we report on a single shot, spectrally resolved, non-collinear cross-correlator with sub-fs resolution. With a feedback applied we keep the output of the TW class Ti:sapphire amplifier chain in time with the seed oscillator to ~3 fs RMS level for several hours. This is well below the typical pulse duration used at FELs and supports fs resolution pump-probe experiments. Short term jitter and long term timing drift measurements are presented. Applicability to other wavelengths and integration into the timing infrastructure of the FEL are also covered to show the full potential of the device.

Year:  2015        PMID: 26698475     DOI: 10.1364/OE.23.029929

Source DB:  PubMed          Journal:  Opt Express        ISSN: 1094-4087            Impact factor:   3.894


  1 in total

1.  Experimental station Bernina at SwissFEL: condensed matter physics on femtosecond time scales investigated by X-ray diffraction and spectroscopic methods.

Authors:  Gerhard Ingold; Rafael Abela; Christopher Arrell; Paul Beaud; Pirmin Böhler; Marco Cammarata; Yunpei Deng; Christian Erny; Vincent Esposito; Uwe Flechsig; Rolf Follath; Christoph Hauri; Steven Johnson; Pavle Juranic; Giulia Fulvia Mancini; Roman Mankowsky; Aldo Mozzanica; Roland Alex Oggenfuss; Bruce D Patterson; Luc Patthey; Bill Pedrini; Jochen Rittmann; Leonardo Sala; Matteo Savoini; Cristian Svetina; Thierry Zamofing; Serhane Zerdane; Henrik Till Lemke
Journal:  J Synchrotron Radiat       Date:  2019-04-15       Impact factor: 2.616

  1 in total

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