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Multi-cycle terahertz generation in a periodically poled Rb:KTP crystal
Tian, W. (Corresponding author)CFEL* ; Cirmi, G.CFEL*DESY* ; Canalias, C. ; Zukauskas, A. ; Wang, L.CFEL*Extern* ; Olgun, H. T.CFEL*DESY* ; Kueny, E.CFEL*DESY* ; Calendron, A.-L.CFEL*DESY* ; Reichert, F.Extern* ; Hasse, K.CFEL*Extern* ; Hua, Y.CFEL*Extern*XFEL.EU*DESY* ; Schimpf, D. N.CFEL*Extern* ; Çankaya, H.CFEL*Extern* ; Pergament, M.CFEL*DESY* ; Hemmer, M.CFEL*Extern* ; Matlis, N.CFEL*DESY* ; Pasiskevicius, V. ; Laurell, F. ; Kartner, F. X.CFEL*XFEL.EU*DESY*
2020
OSA Washington, D.C.
2020Conference on Lasers and Electro-Optics : [Proceedings] - OSA Washington, D.C., 2020. - ISBN 978-1-943580-76-7 - doi:10.1364/CLEO_SI.2020.STu3G.6
CLEO: Science and Innovations, WashingtonWashington, USA, 10 May 2020 - 15 May 20202020-05-102020-05-15
OSA Washington, D.C. STu3G.6 (2020) [10.1364/CLEO_SI.2020.STu3G.6]2020
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Please use a persistent id in citations: doi:10.1364/CLEO_SI.2020.STu3G.6
Abstract: We investigate multi-cycle 0.5-Terahertz generation in a periodically poled Rb-doped potassium titanyl phosphate (PPKTP) crystal. Up to 0.65-gJ terahertz energy was obtained at 77 K with maximum internal optical-to-terahertz efficiency of 0.09%.
Contributing Institute(s):
- Ultrafast Lasers & X-rays Division (FS-CFEL-2)
Research Program(s):
- 6211 - Extreme States of Matter: From Cold Ions to Hot Plasmas (POF3-621) (POF3-621)
Experiment(s):
- Experiments at CFEL