A compact autocorrelator for the wavelength range between 4 and 10 μm |
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Authors: | M. Brunken L. Casper H. Genz C. Hessler S. Khodyachykh A. Richter |
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Affiliation: | Institut für Kernphysik, Technische Universität Darmstadt, Fachbereich 05 Physik, Schlossgartenstrasse 9, D-64289, Darmstadt, Germany |
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Abstract: | A compact autocorrelator suitable for the measurement of the optical pulse length of the infrared free electron laser (IR-FEL) at the S-DALINAC is described. It allows to investigate the energy transfer process from the electrons into the laser light within the undulator of the FEL. The autocorrelator utilizes the second harmonic generation (SHG) and it provides the possibility of a background-free measurement at wavelengths between 4 and 10 μm. Simulations for three different crystals used for SHG show that the largest efficiency for SHG and the best temporal resolution is achieved with a ZnGeP2 crystal at a length of 2 mm. A test experiment at the free electron laser for infrared experiments confirmed the expected high efficiency of about 7.5% of SHG for the ZnGeP2 crystal as well as the easy handling and fast adjustment of the system. |
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Keywords: | Autocorrelator Frequency doubling Free-electron laser Ultrashort pulses |
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