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1.
A pulsed, narrow-band FA (II) color center laser is described which provides peak powers up to 20 kW with a band-width below 0.3 cm-1 in the wavelength range from 2.4 μm to 2.9 μm. A frequency-doubled Nd: YAG laser is used as a pump source. The high peak power and short pulse length makes this layer system very attractive for time-resolved infrared spectroscopy on a nonosecond timescale.  相似文献   

2.
The design and operation of a novel optically pumped molecular gas laser cell, which uses geometrical coupling and is compatible with high energy unstable resonator CO2 laser pump beams, is described. The attainment of high energy output densities (>0.5Je?1>-1) from the 12.08 μm and 12.81 μm NH3 laser transitions using this pumping arrangement is reported.  相似文献   

3.
A CW, DCM dye laser has been used to pump a RbCl:Li crystal in a color center laser. The DCM dye laser was pumped by the 488 nm and 514.5 nm lines of an argon ion laser. When used in a broad band configuration the dye laser had a power output in the TEM00 mode in excess of 600 mW at a wavelength of 655 nm. An output power in excess of 10 mW at 2.73 μm was possible from the RbCl:Li crystal in a Burleigh FCL for an input power of 600 mW at 655 nm. This method of pumping for the RbCl:Li alleviates the need for both argon ion and krypton ion laser pumps for the Burleigh FCL. All three crystals can be pumped to the specification power levels with a single argon ion laser.  相似文献   

4.
Li J  Hu T  Jackson SD 《Optics letters》2012,37(12):2208-2210
A diode-cladding-pumped dual wavelength Q-switched Ho3+-doped fluoride cascade fiber laser operating in the mid-infrared is demonstrated. Stable pulse trains from the (5)I6 → (5)I7 and (5)I7 → (5)I8 laser transitions were produced, and the μs-level time delay between the pulses from each transition was dependent on the pump power. At maximum pump power and at an acousto-optic modulator repetition rate of 25 kHz, the (5)I6 → (5)I7 transition pulse operated at 3.005 μm, a pulse energy of 29 μJ, and a pulse width of 380 ns; the (5)I7 → (5)I8 transition pulse correspondingly produced 7 μJ pulse energy and 260 ns pulse width at 2.074 μm. To the best of our knowledge, this is the first demonstration of a Q-switched fiber laser operating beyond 3 μm.  相似文献   

5.
We report design criteria and performance characteristics of a pulsed color center laser, excited by a nitrogen-pumped dye laser. One hundred watts peak power with 2% energy conversion efficiency and a 0.03 cm-1 bandwidth are obtained near 2.7 μm.  相似文献   

6.
Theoreticalanalysisandexperimentalinvestigationofpulsedtunableforsteritelaser¥WUFushun;WUXing;B.Hamilton;YAOJianquan(PhysicsD...  相似文献   

7.
赵铭  王天枢 《应用光学》2019,40(4):551-556
设计了一种基于色散管理的掺铥光纤激光器。通过调节泵浦功率以及腔内偏振态,首先实现了稳定的展宽脉冲输出,中心波长和脉冲宽度分别为1 939.4 nm和482 fs。最大输出功率为15 mW,对应的单脉冲能量为0.52 nJ。增加泵浦功率到645 mW时,通过适当调节偏振控制器可以实现类噪声脉冲锁模,中心波长为1 940.1 nm。所实现的锁模脉冲具有飞秒量级的尖峰以及皮秒量级的基底。最大输出功率为20.4 mW,相对应的单脉冲能量为0.7 nJ。相比于传统孤子,采用色散管理所实现的锁模脉冲具有更高的脉冲能量。此外,所设计的掺铥光纤激光器可作为理想的主振荡功率放大以及啁啾脉冲放大结构的种子源,进一步提高脉冲能量,拓展2 μm高能光纤激光器的实际应用。  相似文献   

8.
高功率TEA CO2激光器两波长激光切换输出技术   总被引:1,自引:0,他引:1       下载免费PDF全文
 以TEA CO2激光器通常采用的平-凹光学稳定腔为基础,提出了一种新的波长选支方法——输出窗口镀膜选支方法。利用一台高平均功率TEA CO2激光器进行了选支实验研究,结合现有光学镀膜技术,得到了中心波长为9.3 μm的激光单谱线输出,其单脉冲能量及平均功率与激光器原中心波长10.6 μm单谱线输出的相应参数基本相当。研究发现,以相同单脉冲能量激光照射热敏纸时,中心波长9.3 μm激光光斑与中心波长10.6 μm的明显不同。同时,还设计出两波长窗口密闭免调切换装置,在一台激光器上实现了10.6,9.3 μm两个中心波长激光同等功率水平的免调切换输出,切换位置误差小于5″,密封性能满足使用要求。  相似文献   

9.
大模面积掺Yb3+双包层光纤激光器的实验研究   总被引:10,自引:7,他引:3  
本文研究了在连续泵浦和脉冲泵浦两种情况下, 大模面积(LMA)掺Yb3+双包层光纤激光器的输出特性. 采用连续泵浦, 在最大泵浦功率为10.4 W时, 得到了平均功率4.6 W、中心波长1.09 μm的准连续激光输出. 采用脉冲泵浦, 得到了脉宽小于50 ns、峰值功率为5.3 kW、重复频率为5 kHz、单脉冲能量为0.26 mJ的稳定的调Q脉冲输出.  相似文献   

10.
The use of a continuously tunable CO2 laser to optically pump the NH3 laser via previously inaccessible absorption lines is described. Efficient laser action has thus been achieved in the 11–13 μm region on transitions formerly only obtained in buffered mixtures.  相似文献   

11.
Radiation at 2.36 μm is produced by stimulated electronic Raman scattering in barium vapour. The pump radiation is provided by a XeCl excimer laser. Photon conversion efficiencies of up to 1% are observed. The variations of the infra-red Stokes output with barium number density and with pump intensity are described.  相似文献   

12.
The static laser performance of a-growth Nd:GdVO4 crystal (a-cut, 4 × 4 × 25 (mm)) at 1.34μm pumped by flash-lamp is investigated with different transmissions of output couplers. With the output coupler transmission of T = 30%, the static output energy of 148 mJ is obtained when the pump energy is 35.2 J,and the corresponding electric-optical conversion efficiency is 0.42%. The Q-switched output of lasers with the output wavelength ranging from 1.3 to 1.6 μm can be realized by using Co2+ :LaMgAl11O19 (Co:LMA)as saturable absorber. A flash-lamp-pumped, passively Q-switched Nd:GdVO4 laser with Co:LMA as saturable absorber is demonstrated in plano-concave laser cavity. With the cavity length of 16.3 cm and pump energy of 19.8 J, the single-pulse output energy, pulse width, and peak power are obtained to be 4m J, 80 ns, and 5 × 104 W, respectively.  相似文献   

13.
We report for the first time to inscribe the Fiber Bragg Grating (FBG) in Tm3+-doped multimode double-clad silica fiber by 800 nm femtosecond laser with a phase mask. The 1.35 μm period Bragg grating is written into the fiber core, which is responded to the laser center wavelength located at nearly 1960 nm. Continuous wave total output power of 11.5 W is obtained under the launched pump power of 29.8 W, corresponding to a slope efficiency of 45.0% and a conversion efficiency of 38.6%.  相似文献   

14.
Aninvestigationonlaser-diode-arraypumpedNd:glassslablaser¥HUWentao;ZHOUFuzheng;CHENYouming;JIANGZhonghong(ShanghaiInstituteof...  相似文献   

15.
 利用飞秒激光微加工技术,可以在光纤纤芯内直写出布拉格光栅,它与传统的光纤光栅制作方法相比,具有耗时短、无需光敏光纤、周期可任意设定、光栅稳定性高等优点。采用800 nm钛宝石飞秒激光器,在Hi1060光纤内写入一支8 mm长的布拉格光栅,光纤光栅的周期为2.9 μm,这是中心波长为1 042 nm的八阶光纤布拉格光栅。将所得光栅与一段有源的双包层光纤熔接,作为激光输出镜,利用975 nm的LD光纤模块作为泵浦源,采用端泵浦技术构成双包层光纤激光器。双包层光纤采用Nufern公司镱(Yb3+)离子掺杂双包层光纤,光纤长度3 m。所得激光器的输出功率为71.1 W,中心波长1 042 nm,带宽约为0.8 nm。  相似文献   

16.
An all-fiber LD-clad-pumped Tm-doped fiber laser was reported, and the CW maximal output power reached 24 W at nearly 1.94 μm. The double-clad Tm-doped fiber had a demission of 25/250 μm with the core NA 0.1 and inner-clad NA 0.46. A matched passive multi-mode FBG acted as the front cavity. Cooling by the water, the 56% high slope efficiency was achieved and threshold was 6.4 W, respected to the launched pump power. At the low power pump, the fiber laser spectrum had only one peak at 1.936 μm. Increasing the launched pump power, the output laser wavelength grew to 3–4 peaks. Because the multi-mode FBG reflectivity was not very high, both ends of the fiber laser had laser output power, and the ratio was nearly 10:1.  相似文献   

17.
傅爱兵  郝明瑞  杨耀  沈文忠  刘惠春 《中国物理 B》2013,22(2):26803-026803
We propose an optically pumped nonpolar GaN/AlGaN quantum well (QW) active region design for terahertz (THz) lasing in the wavelength range of 30 μm~ 40 μm and operating at room temperature. The fast longitudinal optical (LO) phonon scattering in GaN/AlGaN QWs is used to depopulate the lower laser state, and more importantly, the large LO phonon energy is utilized to reduce the thermal population of the lasing states at high temperatures. The influences of temperature and pump intensity on gain and electron densities are investigated. Based on our simulations, we predict that with a sufficiently high pump intensity, a room temperature operated THz laser using a nonpolar GaN/AlGaN structure is realizable.  相似文献   

18.
A Raman laser based on a bulk silicon single crystal with 1.127 μm emission wavelength is demonstrated. The Si crystal with 30 mm length was placed into an external cavity and pumped by a Q-switched Nd:YAG master oscillator power amplifier system. Strong defocusing of the pump and Raman laser beam by free carriers was compensated by an intracavity lens. Raman laser operation with a pulse duration of 2.5 ns was identified by a Raman laser threshold significantly lower than the single-pass stimulated Raman-scattering threshold. Linear absorption losses of the 1.06415 μm pump radiation are strongly reduced by cooling the Si crystal to a temperature of 10 K.  相似文献   

19.
Figure-eight actively-passively mode-locked erbium-doped fiber laser   总被引:3,自引:0,他引:3  
The advantages of using nonlinear optical loop mirror (NOLM) to compress pulse with slight amplitude fluctuation and reflected energy loss are analyzed in theory. Experimentally the NOLM is placed in an actively mode-locked erbium-doped fiber ring laser to form a figure-eight actively and passively mode-locked fiber laser. 12 ps mode-locked pulses centered at 1.543 μm were obtained with the modulation frequency of 2.498748700 GHz. 3.715 mW output power is achieved with 50 mW pump power.  相似文献   

20.
Cryogenic temperature operation of a c-cut Tm(5%),Ho(0.3%):YAlO3 laser end-pumping by a fiber-coupled laser-diode is reported. A 2.55 W incident pump power is used to generate 160 mW of laser output, representing a 7.1% optical-to-optical conversion efficiency respect to the incident pump power. In the experiment, three wavelengths—2.04, 2.10, and 2.13 μm oscillation have been observed simultaneously, which is agreement with the inherent a-axis polarization fluorescence spectra of Tm,Ho:YAlO3. Also single wavelength oscillation performance has been observed which is centered at 2.13 μm.  相似文献   

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