Second Harmonic Generation using a seeded soft X-ray laser
ORAL
Abstract
harmonic generation and sum-frequency generation spectroscopy in the near infrared and optical range have enabled intriguing insights into surface properties and their influence on chemical reactions. Here, we report the first generation of second harmonic emission in the extreme ultraviolet (XUV) at the titanium M2,3-edge with a high-harmonic seeded soft X-ray laser in a single-hot manner with an input photon energy of 37.8 eV, bringing nonlinear XUV spectroscopy with atomic specificity to the table-top. Comparing the experimental observations with real-time time dependent density functional theory calculations, we find a strong surface sensitivity in titanium, caused by a resonant enhanced transition. This proof-of-principle experiments paves the ways for future research enabled by element and chemical sensitivity at surfaces and buried interfaces in the lab scale.
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Presenters
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Michael Zuerch
University of California, Berkeley, Department of Chemistry, University of California Berkeley
Authors
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Michael Zuerch
University of California, Berkeley, Department of Chemistry, University of California Berkeley
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Tobias Helk
U Jena
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Emma Berger
University of California, Berkeley
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Sasawat Jamnuch
University of California, San Diego, University of California San Diego
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Lars Hoffmann
University of California, Berkeley
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Adeline Kabacinski
ENSTA Paris, Ecole Polytechnique
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Julien Gautier
ENSTA Paris, Ecole Polytechnique
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Fabien Tissandier
ENSTA Paris, Ecole Polytechnique
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Jean philipe Goddet
ENSTA Paris, Ecole Polytechnique
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Hung-Tzu Chang
University of California, Berkeley, Chemistry, University of California Berkeley
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Juwon Oh
University of California, Berkeley
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C Das Pemmaraju
SLAC, Stanford, Materials Science, SLAC National Accelerator Laboratory, SLAC Stanford, Stanford Univ, SLAC - Natl Accelerator Lab
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Tod Pascal
University of California, San Diego, University of California San Diego
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Stephane Sebban
ENSTA Paris, Ecole Polytechnique
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Christian Spielmann
Institute of Optics and Quantum Electronics, Friedrich Schiller University Jena, U Jena