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Dispersion Compensation in a 3 μm Wavelength OPCPA System by Shaping the 1.5 μm Signal Input

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Abstract

We report on phase and intensity pulse shaping of the 1.5-μm signal beam of a 3-μm wavelength OPCPA system. This shaper and associated algorithms enable in-situ optimization of nonlinear processes driven at mid-IR wavelengths.

© 2022 The Author(s)

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More Like This
3 μm Wavelength OPCPA for Soft X-ray Generation

D. Carlson, W. Hettel, D. Morrill, D. Lesko, T.-H. Wu, F. Yu, S. Diddams, H. Kapteyn, M. Murnane, and M. Hemmer
JM3E.3 CLEO: Applications and Technology (CLEO_AT) 2022

Multi-mJ, 1kHz, 3.1µm OPCPA

Susannah Wang, Michael Gerrity, Sterling Backus, Margaret M. Murnane, Henry C. Kapteyn, and Seth L. Cousin
STh1L.5 CLEO: Science and Innovations (CLEO_SI) 2017

High-Average-Power, 100-kHz OPCPA System with Dual Output at 1.55/3.1 μm

Mark Mero, Zsuzsanna Heiner, Valentin Petrov, Horst Rottke, Federico Branchi, Gabrielle M. Thomas, and Marc J. J. Vrakking
AW4A.5 Advanced Solid State Lasers (ASSL) 2018

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