Spectral-Phase-Modulated Cross-Polarized Wave for Chirped Pulse Amplifier with High Contrast Ratio
Shuang Qin1 , Zhao-Hua Wang1** , Shuai-Shuai Yang2 , Zhong-Wei Shen1 , Quan-Li Dong2 , Zhi-Yi Wei1**
1 Beijing National Laboratory for Condensed Matter Physics, and Institute of Physics, Chinese Academy of Sciences, Beijing 1001902 School of Physics and Optoelectronic Engineering, Ludong University, Yantai 264025
Abstract :We demonstrate a high-quality cross-polarized-wave filter based on spectral phase modulation. Driven by well-compressed spectral-phase fully-compensated fundamental laser pulses, the filter stretches the pulse bandwidth from 35 nm to 70 nm with a conversion efficiency of 20%. After implementing the filter into a femtosecond TW Ti:sapphire laser system, we generate 40 mJ output pulse energy with pulse duration of 18.9 fs. The temporal contrast of the compressed pulse is enhanced to 10$^{9}$.
收稿日期: 2016-11-17
出版日期: 2017-01-25
:
42.60.-v
(Laser optical systems: design and operation)
42.65.-k
(Nonlinear optics)
42.65.Re
(Ultrafast processes; optical pulse generation and pulse compression)
87.57.cj
(Contrast)
[1] Donna S and Gerard M 1985 Opt. Commun. 56 3 [2] Ed Gerstner 2007 Nature 446 7131 [3] Mourou G, Korn G, Sandner W et al 2011 ELI-Extreme Light Infrastructure Science and Technology with Ultra-Intense Lasers (Berlin: THOSS Media GmbH) p 118 [4] Chvykov V, Rousseau P, Reed S et al 2006 Opt. Lett. 31 1456 [5] Andreev A A, Sonobe R, Kawata S et al 2006 Plasma Phys. Control. Fusion 48 1605 [6] Fuchs J, Antici P, d'Humieres E et al 2006 Nat. Phys. 2 1 [7] Wojtkiewicz J and Durfee C 2004 Opt. Express 12 1383 [8] Kalashnikov M P, Risse E, Schönnagel H et al 2005 Opt. Lett. 30 923 [9] Thaury C, Quéré F, Geindre J P et al 2007 Nat. Phys. 3 424 [10] Jullien A, Albert O, Burgy F et al 2005 Opt. Lett. 30 920 [11] Jullien A, Canova L, Albert O et al 2007 Appl. Phys. B 87 595 [12] Wang J Z, Huang Y S, Xu Y et al 2012 Acta Phys. Sin. 61 9 (in Chinese) [13] Ramirez L P, Papadopoulos D N, Pellegrina A et al 2011 Opt. Express 19 1 [14] Minkovski N, Saltiel S M, Petrov G I et al 2002 Opt. Lett. 27 22 [15] Minkovski N, Petrov G I, Saltiel S M et al 2004 J. Opt. Soc. Am. B 21 1659 [16] Canova L, Albert O, Forget N et al 2008 Appl. Phys. B 93 443 [17] Amplitude Techniques: Data Sheet of Sequoia 800[EB/OL] http://www.amplitude-technologies.com/?fond=produit&id_produit=15&id_rubrique=
[1]
. [J]. 中国物理快报, 2022, 39(10): 104201-.
[2]
. [J]. 中国物理快报, 2021, 38(7): 74202-.
[3]
. [J]. 中国物理快报, 2020, 37(5): 54202-.
[4]
. [J]. 中国物理快报, 2019, 36(12): 124201-.
[5]
. [J]. 中国物理快报, 2019, 36(2): 24201-.
[6]
. [J]. 中国物理快报, 2018, 35(5): 54206-.
[7]
. [J]. 中国物理快报, 2015, 32(09): 94201-094201.
[8]
. [J]. 中国物理快报, 2014, 31(07): 74206-074206.
[9]
. [J]. 中国物理快报, 2013, 30(11): 114206-114206.
[10]
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