Journal Article10.1016/J.JCRYSGRO.2021.126326
Effect of doping distribution on the lasing performance of a cerium-doped lithium calcium aluminum fluoride ultraviolet laser crystal
Marilou Cadatal-Raduban,Marilou Cadatal-Raduban,Kohei Yamanoi,Minh Hong Pham,Takaya Taniguchi,Xi Yu,Nobuhiko Sarukura,Shingo Ono +7 more
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TL;DR: In this article, a large 110mm diameter Czochralski method-grown cerium-doped lithium calcium aluminum fluoride (Ce3+:LiCaAlF6 or Ce:LiCAF) crystal was used for multiphoton luminescence and laser ablation-inductively coupled plasma mass spectrometry (LA-ICPMS).
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About: This article is published in Journal of Crystal Growth. The article was published on 15 Nov 2021. The article focuses on the topics: Slope efficiency & Lasing threshold.
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Citations
Convective instabilities in the Czochralski model with different radii ratios
Liangqi Zhang,XiaoFeng Zhao +1 more
TL;DR: In this article , the authors explore the instability of the complex convection in the Czochralski model concerning the effects of the radii ratio, melt materials, and crystal rotation.
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Theoretical and experimental study of ultraviolet broadband laser amplification using Ce:LiCAF crystal
TL;DR: In this article , the spectral effects in the multipass amplification process have been investigated theoretically and experimentally, including gain narrowing and spectral shifting using the chromatic Frantz-Nodvik model to simulate the amplification of broadband nanosecond UV pulses from a Ce:LiCAF crystal.
Mapping cerium flows in China: A dynamic material flow analysis
Xueping Tan,Yiran Zhong,Ziyi Wang,Yong Geng,Shijiang Xiao,Yuquan W. Zhang,Junxiang Huang +6 more
References
Crystal growth of Ce-doped and undoped LiCaAlF6 by the Czochralski technique under CF4 atmosphere
Kiyoshi Shimamura,Sonia Licia Baldochi,I.M. Ranieri,Hiroki Sato,T. Fujita,V.L. Mazzocchi,C.B.R. Parente,Carlos O. Paiva-Santos,Celso Valentim Santilli,Nobuhiko Sarukura,Tsuguo Fukuda +10 more
TL;DR: In this article, Czochralski-based single crystal growth was investigated and the dependence of lattice parameters on the temperature was measured for LiCAF and LiSrAlF 6 single crystals.
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High-energy, all-solid-state, ultraviolet laser power-amplifier module design and its output-energy scaling principle.
Shingo Ono,Yuji Suzuki,Toshimasa Kozeki,Hidetoshi Murakami,H. Ohtake,Nobuhiko Sarukura,Hiroki Sato,Susumu Machida,Kiyoshi Shimamura,Tsuguo Fukuda +9 more
TL;DR: The detailed information of design parameters, including the gain-coefficient dependence on pump condition, is successfully accumulated for further energy scaling for a terawatt-class ultraviolet chirped pulse amplification laser system or a high-pulse-energy laser system.
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Micro-pulling down method-grown Er3+:LiCaAlF6 as prospective vacuum ultraviolet laser material
Marilou Cadatal-Raduban,Toshihiko Shimizu,Kohei Yamanoi,Kohei Takeda,Minh Hong Pham,Tomoharu Nakazato,Nobuhiko Sarukura,Noriaki Kawaguchi,Noriaki Kawaguchi,Kentaro Fukuda,Kentaro Fukuda,Toshihisa Suyama,Takayuki Yanagida,Yuui Yokota,Akira Yoshikawa +14 more
TL;DR: In this article, the success of trivalent erbium-doped lithium calcium aluminum fluoride (Er 3+ :LiCaAlF 6 ) using the micro-pulling down method was reported.
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Er:LiCAF as Potential Vacuum Ultraviolet Laser Material at 163 nm
Toshihiko Shimizu,Marilou Cadatal-Raduban,Kohei Yamanoi,Satoru Takatori,Masahiro Kouno,Minh Hong Pham,Elmer Estacio,Tomoharu Nakazato,Nobuhiko Sarukura,Noriaki Kawaguchi,Kentaro Fukuda,Toshihisa Suyama,Takayuki Yanagida,Yuui Yokota,Akira Yoshikawa,Fumio Saito +15 more
TL;DR: In this article, the vacuum ultraviolet luminescence characteristics of a micro-pulling down method grown Er3+:LiCaAlF6 were reported, with emission at 163 nm with a lifetime of 1.3μs.
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Vacuum ultraviolet luminescence from a micro-pulling-down method grown Nd3+:(La0.9,Ba0.1)F2.9
Marilou Cadatal,Marilou Cadatal,Yusuke Furukawa,Shingo Ono,Minh Hong Pham,Minh Hong Pham,Elmer Estacio,Tomoharu Nakazato,Toshihiko Shimizu,Nobuhiko Sarukura,Kentaro Fukuda,Kentaro Fukuda,Toshihisa Suyama,Akira Yoshikawa,Fumio Saito +14 more
TL;DR: In this article, a micro-pulling-down method modified for fluoride crystal growth was used to grow a single crystal with 157 and 290 femtosecond pulses of a F 2 laser and a Ti:sapphire laser, respectively.
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