本文介绍了准相位匹配技术的原理,对基于铌酸锂系列、钽酸锂系列以及磷酸钛氧钾型系列的周期极化晶体发展情况进行了综述,对中红外光参量振荡器用的周期极化晶体发展前景进行了展望.
参考文献
[1] | 蔡双双,吴波,沈永行.基于高品质PPMgLN器件的中红外光参量振荡器[J].红外与激光工程,2007(02):160-162. |
[2] | 林洪沂 .准相位匹配PPMgLN光学参最振荡器的研究[D].北京:中国科学院研究生院,2010. |
[3] | Myers L E;Eckardt R C;Fejer M M et al.Quasi-phase-matched optical parametric oscillators in bulk periodically poled LiNbO3[J].Journal of the Optical Society of America B:Optical Crystal Physics,1995,12(11):2102-2116. |
[4] | Hum D .Frequency conversion in near-stoichiometric lithium tantalate fabricated by vapor transport equilibration[D].Stanford University,2007. |
[5] | Yamada M;Nada N;Saitoh M et al.First-order quasi-phase matched LiNbO3 waveguide periodically poled by applying an external field for efficient blue second-harmonic generation[J].Applied Physics Letters,1993,62(05):435-436. |
[6] | Miller G D .Periodically poled lithium niobate:modeling,labrication,and nonlinear-optical performance[D].Stanford University,1998. |
[7] | Myers L E;Miller G D;Eckardt R C et al.Quasi-phase-matched 1.064-μm-pumped optical parametric oscillator in bulk periodically poled LiNbO3[J].Optics Letters,1995,20(01):52-54. |
[8] | Myers L E;Eckardt R C;Fejer M M et al.Multigrating quasi-phase-matched optical parametric oscillator in periodically poled LiNbO3[J].Optics Letters,1996,21(08):591-593. |
[9] | Powers PE.;Bisson SE.;Kulp TJ. .Continuous tuning of a continuous-wave periodically poled lithium niobate optical parametric oscillator by use of a fan-out grating design[J].Optics Letters,1998(3):159-161. |
[10] | Harada A;Nihei Y .Bulk periodically poled MgO-LiNbO3 by corona discharge method[J].Applied Physics Letters,69(18):2629-2631. |
[11] | Hirano Y;Yamamoto S;Tajime T.High-average power,room temperature operation of PPMgLN OPO[A].,2000:666-667. |
[12] | Hirano Y;Yamamoto S;Taniguchi H.Highly efficient and high power 2 μm generation with PPMgLN OPO[A].,2001:579-580. |
[13] | Periodical poling characteristics of congruent MgO:LiNbO_(3) crystals at elevated temperature[J].Applied physics letters,2003(23):4062-4064. |
[14] | Ishizuki H;Shoji I;Taira T .High-energy quasi-phase-matched optical parametric oscillation in a 3-mm-thick periodically poled MgO : LiNbO3 device[J].Optics Letters,2004(21):2527-2529. |
[15] | Hideki Ishizuki;Takunori Taira .High-energy quasi-phase-matched optical parametric oscillation in a periodically poled MgO:LiNbO_(3) device with a 5 mm X 5 mm aperture[J].Optics Letters,2005(21):2918-2920. |
[16] | Volk T R;Pryalkin V I;Rubinina N M .Optical-damage-resistant LiNbO3:Zn crystal[J].Optics Letters,1990,15(18):996-998. |
[17] | Vincent B;Kremer R;Boudrioua A;Moretti P;Zhang YC;Hsu CC;Peng LH .Green light generation in a periodically poled Zn-doped LiNbO3 planar waveguide fabricated by He+ implantation[J].Applied physics, B. Lasers and optics,2007(2/3):235-239. |
[18] | Gopalan V.;Furukawa Y.;Kitamura K.;Mitchell TE. .The role of nonstoichiometry in 180 degrees domain switching of LiNbO3 crystals[J].Applied physics letters,1998(16):1981-1983. |
[19] | Furukawa Y.;Takekawa S.;Niwa K.;Hatano H.;Kitamura K. .Stoichiometric Mg : LiNbO3 as an effective material for nonlinear optics[J].Optics Letters,1998(24):1892-1894. |
[20] | Grisard A.;Polgar K.;Peter A.;Lallier E. .Low electric field periodic poling of thick stoichiometric lithium niobate[J].Electronics Letters,2000(12):1043-1044. |
[21] | Maruyama M;Nakajima H;Kurimura S et al.70-mm-long periodically poled Mg-doped stoichiometric LiNbO3 devices for nanosecond optical parametric generation[J].Applied Physics Letters,2006,89:011101(1-0111013). |
[22] | Müller M;Soergel E;Buse K .Influence of ultraviolet illumination on the poling characteristics of lithium niobate crystals[J].Applied Physics Letters,2003,83(09):1824-1826. |
[23] | Wengler MC;Fassbender B;Soergel E;Buse K .Impact of ultraviolet light on coercive field, poling dynamics and poling quality of various lithium niobate crystals from different sources[J].Journal of Applied Physics,2004(5):2816-2820. |
[24] | Sones CL;Wengler MC;Valdivia CE;Mailis S;Eason RW;Buse K .Light-induced order-of-magnitude decrease in the electric field for domain nucleation in MgO-doped lithium niobate crystals[J].Applied physics letters,2005(21):2901-1-2901-3-0. |
[25] | Wang W J;Kong Y F;Liu H D et al.Light-induced domain reversal in doped lithium niobate crystals[J].Journal of Applied Physics,2009,105:043105(1-0431054). |
[26] | 吕新杰,赵刚,李桂君,高志达,胡小鹏,潘淑娣,祝世宁.基于PPLT晶体的瓦级中红外光参量振荡器研究[J].中国科学G辑,2009(11):1594-1598. |
[27] | Mizuuchi k;yamamoto k .Generation of 340-nm light by frequency doubling of a laser diode in bulk periodically poled LiTaO3[J].Optics Letters,1996,21(02):107-109. |
[28] | Kitaoka Y;Mizuuchi K;Yamamoto K et al.Intracavity second-harmonic generation with a periodically domain-inverted LiTaO3[J].Optics Letters,1996,21(24):1972-1974. |
[29] | Klein ME.;Meyn JP.;Beier B.;Boller KJ.;Wallenstein R.;Lee DH. .Diode-pumped continuous-wave widely tunable optical parametric oscillator based on periodically poled lithium tantalate[J].Optics Letters,1998(11):831-833. |
[30] | Kitamura K.;Niwa K.;Gopalan V.;Mitchell TE.;Furukawa Y. .Crystal growth and low coercive field 180 degrees domain switching characteristics of stoichiometric LiTaO3[J].Applied physics letters,1998(21):3073-3075. |
[31] | Takaaki Hatanaka;Koichiro Nakamura;Tetsuo Taniuchi .Quasi-phase-matched optical parametric oscillation with periodically poled stoichiometric LiTaO_(3)[J].Optics Letters,2000(9):651-653. |
[32] | Nan Ei Yu;Sunao Kurimura;Yoshiyuki Nomura;Masaru Nakamura;Kenji Kitamura;Jun Sakuma;Yoshio Otani;Akira Shiratori .Periodically poled near-stoichiometric lithium tantalate for optical parametric oscillation[J].Applied physics letters,2004(10):1662-1664. |
[33] | Kumaragurubaran S;Takekawa S;Nakamura M;Kitamura K .Growth of 4-in diameter MgO-doped near-stoichiometric lithium tantalate single crystals and fabrication of periodically poled structures[J].Journal of Crystal Growth,2006(2):332-336. |
[34] | M. Katz;R. K. Route;D. S. Hum;K. R. Parameswaran;G. D. Miller;M. M. Fejer .Vapor-transport equilibrated near-stoichiometric lithium tantalate for frequency-conversion applications[J].Optics Letters,2004(15):1775-1777. |
[35] | Hum DS;Route RK;Miller GD;Kondilenko V;Alexandrovski A;Huang J;Urbanek K;Byer RL;Fejer MM .Optical properties and ferroelectric engineering of vapor-transport-equilibrated, near-stoichiometric lithium tantalate for frequency conversion[J].Journal of Applied Physics,2007(9 Pt.1):93108-1-93108-12-0. |
[36] | Vanherzeele H;Bierlein J D;Zumsteg F C .Index of refraction measurements and parametric generation in hydrothermally grown KTiOPO4[J].Applied Optics,1988,27(16):3314-3316. |
[37] | Chen Q.;Risk W.P. .Periodic poling of KTiOPO/sub 4/ using an applied electric field[J].Electronics Letters,1994(18):1516-1517. |
[38] | Fragemann A .Optical Parametric Amplification with Periodically Poled KTiOPO4[D].Royal Institute of Technology,2005. |
[39] | Rosenman G.;Findling Y.;Urenski P.;Englander A.;Thomas P.A.;Hu Z.W.;Skliar A. .Periodically poled KTiOAsO_4 crystals for optical parametric oscillation[J].Journal of Physics, D. Applied Physics: A Europhysics Journal,1999(14):L49-L52. |
[40] | Zukauskas A;Thilmann N;Pasiskevicius V et al.Periodically poled KTiOAsO4 for highly efficient midinfrared optical parametric devices[J].Applied Physics Letters,2009,95:191103(1-1911033). |
[41] | Karlsson H.;Laurell F. .Frequency doubling in periodically poled RbTiOAsO/sub 4/[J].Electronics Letters,1996(6):556-557. |
[42] | Reid DT;Penman Z;Ebrahimzadeh M;Sibbett W;Karlsson H;Laurell F;ROYAL INST TECHNOL DEPT PHYS 2 S-10044 STOCKHOLM SWEDEN. .Broadly tunable infrared femtosecond optical parametric oscillator based on periodically poled RbTiOAsO4[J].Optics Letters,1997(18):1397-1399. |
[43] | Karlsson H;Olson M;Arvidsson G et al.Nanosecond optical parametric oscillator based on large-aperture periodically poled RbTiOAsO4[J].Optics Letters,1999,24(05):330-332. |
[44] | H. Karlsson;F. Laurell;L. K. Cheng .Periodic poling of RbTiOPO_4 for quasi-phase matched blue light generation[J].Applied physics letters,1999(11):1519-1521. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%