共查询到20条相似文献,搜索用时 15 毫秒
1.
B. Z. Li C. G. Sun A. F. Zang X. H. Zhang M. Zhao J. B. Wang G. Y. Jin 《Laser Physics》2011,21(6):988-990
We describe the output performances of the 1048 nm transition in Yb:YAG under in-band pumping with diode laser at the 968 nm wavelength. An end-pumped Yb:YAG crystal yielded 787 mW of continuous-wave (CW) output power for 9.1 W of absorbed pump power. Furthermore, 104 mW 524 nm green light was acquired by frequency doubling. Comparative results obtained for the pump with diode laser at 940 nm are given in order to prove the advantages of the in-band pumping. 相似文献
2.
Y. F. Lü X. H. Zhang J. Xia X. D. Yin A. F. Zhang L. Bao D. Wang H. Quan 《Laser Physics》2009,19(12):2174-2178
We report the efficient compact red laser at 670 nm generation by intracavity frequency doubling of a continuous wave laser
operation of a diode direct pumped Nd:GdVO4 laser on the 4
F
3/2 → 4
I
13/2 transition at 1340 nm. An LBO crystal, cut for critical type I phase matching at room temperature is used for second harmonic
generation of the laser. At an absorbed pump power of 16.2 W, as high as 5.1 W of continuous wave output power at 670 nm is
achieved with 15-mm-long LBO. The optical-to-optical conversion efficiency is up to 0.31, and the fluctuation of the red output
power was better than 3.0% in the given 30 min. Comparative results obtained for the pump with diode laser at 808 nm, into
the highly-absorbing 4
F
5/2 level, are given in order to prove the advantages of the 880 nm wavelength pumping. 相似文献
3.
We report an efficient laser emission on the 1341 nm 4 F 3/2 to 4 I 13/2 transition in Nd:GdVO4 under the pump with diode lasers at 888 nm. Continuous wave (CW) 6.58 W output power at 1341 nm is obtained under 18.3 W of incident pump power; the slope efficiency with respect to the incident pump power was 45.1%. Moreover, intracavity frequency doubling with LiB3O5 (LBO) nonlinear crystal yielded 1.77 W of red light at 670.5 nm. 相似文献
4.
D. Zhang W. H. Peng Q. Lin Y. L. Li Z. H. Tao Q. R. Ruan T. Y. Zhang 《Laser Physics》2011,21(10):1712-1716
We report for the first time, to the best of our knowledge, a Yb:YAG laser operating in a CW on the three-level laser at 968
nm, based on the 2
F
5/2-2
F
7/2 transition, generally used for a 1030 nm emission. The use of a pump module with 16 passes through the crystal allowed the
realization of a Yb:YAG thin-disk laser with 507 mW of continuous wave (CW) output power at 968 nm. Moreover, intracavity
second-harmonic generation (SHG) has also been achieved with a power of 58 mW at 484 nm by using a BiB3O6 (BIBO) non-linear crystal. 相似文献
5.
<正>In diode pumped Nd:YAG lasers,the quantum defect is the most important parameter determining the thermal load of the laser crystal,which can be dramatically reduced by pumping directly into the upper laser level.A compact folded three-mirror cavity with a length of 105 mm is optimized to obtain a highly efficient 473-nm laser.When the absorbed pump power(with 15.8-W incident pump power) at 885 nm into Nd:YAG is 10 W,a continuous-wave 473-nm blue laser as high as 2.34 W is achieved by LBO intra-cavity frequency doubled.The optical-to-optical conversion efficiency is 14.8%.To the best of our knowledge, this is the highest efficiency at 473 nm by an intra-cavity doubled frequency Nd:YAG laser. 相似文献
6.
We report an efficient laser emission on the 1061 nm 4
F
3/2 to 4
I
11/2 transition in Nd:CNGG under the pump with diode laser at 885 nm. Continuous wave (CW) 5.4 W output power at 1061 nm is obtained
under 17.4 W of incident pump power; the slope efficiency with respect to the incident pump power was 36.2%. Moreover, intracavity
frequency doubling with LiB3O5 (LBO) nonlinear crystal yielded 1.75 W of green light at 530.5 nm. An optical-to-optical efficiency with respect to the incident
pump power was 10.1%. 相似文献
7.
报道了LD侧面泵浦NdYAG/S-KTP腔内倍频高功率660 nm连续红光激光器.泵浦组件(呈三角形等间距分布)由9个20 W的激光二极管组成,最大泵浦功率为180 W.通过对谐振腔参数进行优化设计,用LD连续抽运3 mm×65 mm NdYAG激光棒时,获得了波长为1 319 nm的基频光振荡.利用S-KTP Ⅱ类临界相位匹配腔内倍频技术,当泵浦电流为22 A时,获得了6.8 W的连续红光激光输出,光-光转换效率为4.3%. 相似文献
8.
《中国光学快报(英文版)》2021,(9)
We report on diode-pumped continuous-wave Pr-doped yttrium lithium fluoride(Pr:YLF) laser and its frequency doubling to320 nm. The maximum output power of the 640 nm fundamental wave reached 3.44 W with a slope efficiency of about 48.3%.Using a type-I phase-matched lithium triborate(LBO) crystal as a frequency doubler, we have achieved 320 nm ultraviolet radiation with a maximum output power of 1.01 W, which is the highest power ever reported under diode pumping, to the best of our knowledge. 相似文献
9.
X. Y. Mi 《Laser Physics》2012,22(1):74-77
We report for the first time a continuous-wave (CW) green laser emission by sum-frequency mixing in Yb:YAG crystal. Using
type-I critical phase-matching LBO crystal, a green laser at 520 nm is obtained by 1030 and 1048 nm intracavity sum-frequency
mixing. The maximum laser output power of 269 mW is obtained when an incident pump laser of 17.8 W is used. At the output
power level of 269 mW, the output stability is better than 3.2%. 相似文献
10.
Jintao Bai Nuo Wangan Petroleum Institute XV an PRC)Jinxing Cai Yibin Zhang Shuicai Wang 《Chinese Journal of Lasers》1992,1(2):101-104
Experimental results of 200 MHz CW actively mode-locked KTP two-pass in-tracavity frequency-doubled Nd:YAG laser are reported.The primary factors influencingthe continuous-wave frequency-doubled conversion efficiency are analyzed.High efficiencylaser output was achieved by L-type folded-arm-cavity two-pass frequency-doubling.15 Waverage mode-locked power and 1.5W average mode-locked SHG green light output were ob-tained at 3.5kW single lamp input power respectively. 相似文献
11.
L. Cabaret 《Applied physics. B, Lasers and optics》2009,94(1):71-79
An efficient pumping scheme for a quasi-continuous-wave diode-pumped Yb:YAG laser is presented. Single-mode operation and
fine wavelength tuning are assured by the use of a rubidium titanyl phosphate (RTP) Fabry–Perot étalon. When frequency doubled,
the 200–420 μs duration pulses reach a peak power of 70 W at a wavelength of 515 nm. The TEM00 beam is nearly diffraction limited with an M
2 factor of 1.06 at full power. The tuning range spans from 512 to 520 nm and the pulse to pulse frequency stability is on
the order of ±10 MHz.
Laboratoire Aimé Cotton is associated with Université Paris Sud 11. 相似文献
12.
The continuous-wave high-efficiency laser emission of Nd:GdVO4 at the second-harmonic of 456 nm obtained by intracavity frequency doubling with an BiB3O6(BiBO) nonlinear crystal is investigated under pumping by diode laser at 880 nm into emitting level 4F3/2. About 3.8 W at 456 nm with M2 = 1.4 was obtained from a 5 mm-thick 0.4 at.% Nd:GdVO4 laser medium and a 12 mm-long BiBO nonlinear crystal in a Z-type cavity for 13.9 W absorbed pump power. An optical-to-optical efficiency with respect to the absorbed pump power was 0.274. Comparative results obtained for the pump with diode laser at 808 nm, into the highly-absorbing 4F5/2 level, are given in order to prove the advantages of the 880 nm wavelength pumping. 相似文献
13.
We report an efficient laser emission on the 912 nm 4
F
3/2 to 4
I
9/2 transition in Nd:GdVO4 under the pump with diode lasers at 888 nm. Continuous wave (CW) 4.91 W output power at 912 nm is obtained under 18.3 W of
incident pump power; the slope efficiency with respect to the incident pump power was 57.5%. Moreover, intracavity frequency
doubling with BiB3O6 (BiBO) nonlinear crystal yielded 1.33 W of deep-blue light at 456 nm. 相似文献
14.
We report for the first time a continuous-wave (CW) yellow laser emission by sum-frequency mixing in Nd:YAG crystal. Using
type-I critical phase-matching LBO crystal, a yellow laser at 572 nm is obtained by 1444 and 946 nm intracavity sum-frequency
mixing. The maximum laser output power of 178 mW is obtained when an incident pump laser of 18.2 W is used. At the output
power level of 178 mW, the output stability is better than 4.2%. 相似文献
15.
Qianqian Liu Min Yang Yi Yao Ling Zhao Bin Li Dapeng Qu Quan Zheng 《Optics and Spectroscopy》2013,115(1):137-139
We report the efficient compact green laser at 515 nm generation by intracavity frequency doubling of a continuous wave (CW) laser operation of a diode-pumped Yb:YAG laser on the transition at 1030 nm. An LBO crystal, cut for critical type I phase matching at room temperature is used for second harmonic generation (SHG) of the laser. With the incident pump power of 10 W, 270 mW of CW output power at 515 nm is achieved with 15-mm-long LBO. The optical-to-optical conversion efficiency is 2.7%, and the power stability in 8 h is better than 2.36% with low noise. 相似文献
16.
We, for the first time, report the intracavity frequency doubling at 1030 nm in an LBO nonlinear optical crystal, at a type-I phase-matching direction of (θ, Φ) = (90°, 13.6°), performed with a double-LD polarization coupled system. With an incident power of 2 W, the maximum output power of 5.62 mW at 515 nm was obtained using a 2 × 2 × 10 mm3 LBO crystal. The threshold was 726 mW. The optical conversion efficiency was 0.28%. 相似文献
17.
Xinjun Guo Wei Hou Hengli Zhang Yong Bi Yahui Chen Zuyan Xu 《Optics Communications》2006,267(2):451-454
We demonstrate the generation of 515 nm green laser with diode-pumped Yb:YAG thin disk by intracavity frequency doubling of type-I phase-matched LiB3O5(LBO) in a V-type cavity at room temperature. A continuous-wave (CW) output power of 4.44 W at 515 nm was obtained. Optical-optical efficiency of 515 nm green laser is 14.6%. The fluctuation of green laser was 1.6% at the maximum output power in 0.5 h. Thermal lensing effects in Yb:YAG thin disk are investigated too. 相似文献
18.
J. Kawanaka Y. Takeuchi A. Yoshida S. J. Pearce R. Yasuhara T. Kawashima H. Kan 《Laser Physics》2010,20(5):1079-1084
A MOPA laser system for high pulse energy and high average power has been developed by using a cryogenic Yb:YAG. In the regenerative amplifier with our original TRAM architecture, the high pulse energies of 6.5 and 1.5 mJ were obtained at the repetition rate of 200 Hz and 1 kHz, respectively. An optical efficiency was as high as ηo-o = 9.3% with an excellent beam quality of M 2 < 1.1, which ensured that a cryogenic Yb:YAG TRAM had a high thermal strength. The following four pass power amplifier with a cryogenic Yb:YAG rod showed 140 mJ at 100 Hz. Both a high optical efficiency of ηo-o = 30% and a high slope efficiency of ηs = 44% showed that an efficient laser operation could be realized for a power amplification with both a high pulse energy and a high average power by using a cryogenic Yb:YAG. 相似文献
19.
A Nd:YVO4 crystal was pumped directly into the emitting level by a laser diode at 914 nm. We achieved an output power of 1.46 W at
1342 nm for an incident pump power of 18.3 W, corresponding to an optical-to-optical conversion efficiency of 8.0%. The fluctuation
of the output power was better than 2.3% in the given 30 min. The beam quality M2 factor value was equal to 1.15 at the maximum output power. 相似文献
20.
High-efficiency 1040 and 1078 nm laser emission of a Yb:Y2O3 ceramic laser with 976 nm diode pumping
We report a high-efficiency diode-end-pumped polycrystalline Yb:Y2O3 ceramic laser. Pumped by a 976 nm laser diode bar and with an absorbed pump power of 2.8 W, cw output power of 1.74 W at 1078 nm, and 0.73 W at 1040 nm were obtained. The slope efficiency was measured to be 82.4% for the 1078 nm laser emission and 57.1% for the 1040 nm laser emission. 相似文献