Author Affiliations
Abstract
CEA CESTA, Le Barp, France
Mid-spatial frequency wavefront deformation can be deleterious for the operation of high-energy laser systems. When fluid cooled high-repetition-rate amplifiers are used, the coolant flow is likely to induce such detrimental mid-spatial frequency wavefront deformations. Here, we describe the design and performance of a 90 mm × 90 mm aperture, liquid-cooled Nd:phosphate split-slab laser amplifier pumped by flash-lamps. The performance of the system is evaluated in terms of wavefront aberration and gain at repetition rates down to 1 shot per minute. The results show that this single cooled split-slab system exhibits low wavefront distortions in the medium to large period range, compatible with a focus on target, and despite the use of liquid coolant traversed by both pump and amplified wavelengths. This makes it a potential candidate for applications in large high-energy laser facilities.
flash-lamp pumping high-power laser laser cooling neodymium glass wavefront error 
High Power Laser Science and Engineering
2024, 12(1): 010000e3
张琮 1夏聪 1马世会 1,*于永贵 1,**[ ... ]吴以成 1
作者单位
摘要
1 天津理工大学材料科学与工程学院功能晶体研究院,天津 300384
2 山东大学晶体材料国家重点实验室,山东 济南 250100
Nd3+离子由于其独特的能级结构,在近红外激光应用方面受到了广泛关注。硅酸镓钙铌(CNGS)晶体作为硅酸镓镧体系的一员,具有较好的力学性能和热学性能。使用提拉法生长了Nd3+掺杂的CNGS晶体,直径为30 mm,等径部分长度为45 mm,并对其折射率、吸收光谱、发射光谱等光学性能进行了表征。使用880 nm泵浦光,沿b向获得了1065 nm的激光输出,泵浦功率为6.69 W时激光输出功率为1.88 W,转换效率为28.1%。
激光光学 晶体生长 提拉法 Ca3NbGa3Si2O14 钕离子 激光 
中国激光
2023, 50(22): 2201009
杨星辰 1周兆琴 1满意 2许辉 2,aff******张丹 1,aff***
作者单位
摘要
1 厦门大学电子科学与技术学院(国家示范性微电子学院),福建 厦门 361005
2 黑龙江大学化学化工与材料学院功能无机材料化学教育部重点实验室,黑龙江 哈尔滨 150080
以双齿膦氧化合物4,6-二(二苯基氧膦基)二苯并噻吩(DBTDPO)为中性配体,以噻吩基三氟甲基乙酰丙酮(TTA)为阴离子配体,制备了具有分子内能量传递作用的稀土钕配合物Nd(TTA)3DBTDPO掺杂聚甲基丙烯酸甲酯(PMMA)溶液聚合物材料。采用Ag+-K+离子交换法和一步光刻法,分别制备了基于倏逝波型的BK-7玻璃波导和SU-8聚合物波导。采用成本低廉的发光二极管(LED)替代半导体激光器作为泵浦源,利用有机配体与中心稀土Nd3+离子的分子内能量传递作用,在225 mW 405 nm LED泵浦下,在1.06 μm波长处分别获得了3.6 dB/cm和4.1 dB/cm的光增益。所提出的基于分子内能量传递作用的LED垂直顶泵浦方式能够有效降低器件的商用化成本,有望在平面光子集成领域得到广泛应用。
激光器 波导放大器 钕配合物 1.06 μm 倏逝波 LED泵浦 
中国激光
2023, 50(6): 0601002
作者单位
摘要
东北电力大学理学院,吉林 吉林 132012
M′-型Nd3+:GdTaO4微晶被成功合成并用于变温和变压光谱测试研究。在293~373 K的测试温度范围内,3F3/2→4I9/2跃迁的光谱位置具有高热稳定性,3F3/2(R2)→4I9/2(Z5)跃迁的温度系数仅为0.003 9 cm?傆b1·K?傆b1,3F3/2(R2)→4I9/2(Z2)和3F3/2(R1)→4I9/2(Z2)跃迁荧光的强度比具有高温度依赖性,在生理温度范围内的相对灵敏度为(0.60-0.52)(%·K-1)。在高达11.39 GPa的测试压力范围内,所有跃迁随压力呈线性移动。3F3/2(R2)→4I9/2(Z5)跃迁的光谱位置对压力非常敏感,其灵敏度为15.18 cm?傆b1·GPa?傆b1。此外,各跃迁的荧光强度和光谱宽度在升温和增压过程中的变化也被分析和讨论。与其它近红外光学传感器的对比表明,M′-型Nd3+:GdTaO4在温度和压力传感方面具有良好性能。
钕离子 稀土钽酸盐 光致发光 温度传感 压力传感 neodymium ion rare-earth tantalate photoluminescence temperature sensing pressure sensing 
硅酸盐学报
2022, 50(9): 2493
作者单位
摘要
1 Institute of Chemistry of the Condensed Matter of Bordeaux (ICMCB), Chemistry Department, 33608 Pessac, France
2 UMR CNRS 7252, Université de Limoges, XLIM, 87060 Limoges, France
3 LP2N, Institut d’Optique Graduate School– CNRS–University of Bordeaux, 33400 Talence, France
Phosphate glasses Neodymium Optical fibers Self-focusing Super-continuum 
Frontiers of Optoelectronics
2022, 15(1): s12200
Author Affiliations
Abstract
1 State Key Laboratory of Luminescent Materials and Devices, Guangdong Provincial Key Laboratory of Fiber Laser Materials and Applied Techniques, Guangdong Engineering Technology Research and Development Center of Special Optical Fiber Materials and Devices, School of Materials Science and Technology, South China University of Technology, Guangzhou 510640, China
2 Guangdong Engineering Technology Research and Development Center of High-performance Fiber Laser Techniques and Equipments, Zhuhai 519031, China
Nd3+-doped fiber lasers at around 900 nm based on the 4F3/24I9/2 transition have obtained much research attention since they can be used as the laser sources for generating pure blue fiber lasers through the frequency doubling. Here, an all-fiber laser at 915 nm was realized by polarization-maintaining Nd3+-doped silica fiber. A net gain per unit length of up to 1.0 dB/cm at 915 nm was obtained from a 4.5 cm fiber, which to our best knowledge is the highest gain coefficient reported in this kind of silica fiber. The optical-to-optical conversion efficiency varies with the active fiber length and the reflectivity of the output fiber Bragg grating (FBG), presenting an optimal value of 5.3% at 5.1 cm fiber length and 70% reflectivity of the low reflection FBG. Additionally, the linear distributed Bragg reflector short cavity was constructed to explore its potential in realizing single-frequency 915 nm fiber laser. The measurement result of longitudinal-mode properties shows it is still multi-longitudinal mode laser operation with 40 mm laser cavity. These results indicate that the Nd3+-doped silica fiber could be used to realize all-fiber laser at 915 nm, which presents potential to be the seed source of high-power fiber laser.
fiber laser laser materials neodymium 
Chinese Optics Letters
2020, 18(1): 011401
王冰艳 1李养帅 1,*张攀政 1,**王利 1[ ... ]朱健强 1
作者单位
摘要
1 中国科学院上海光学精密机械研究所高功率激光物理联合实验室, 上海 201800
2 中国工程物理研究院上海激光等离子体研究所, 上海 201800
重复频率激光放大器是实现重复频率激光器的关键器件,其重复频率取决于对抽运及放大过程中产生热量的有效控制。针对千焦耳量级输出重复频率激光器的需求,通过合理的结构设计、冷却液选型及测试等,研制出一台基于氙灯抽运、钕玻璃增益介质、液体冷却、通光直径为Φ130 mm的激光放大器样机。测试结果表明,该放大器样机可实现每分钟一次的重复频率运行,同时具备双程1.3189倍净增益,双程动态波前PV(peak to valley)平均值为0.2718波长(λ)(20 ℃,λ=1053 nm,10发次计)和0.3223λ(30 ℃,λ=1053 nm,10发次计)。
激光器 重复频率激光放大器 液体冷却 氙灯抽运 钕玻璃 
中国激光
2019, 46(10): 1001007
Author Affiliations
Abstract
Key Laboratory of Space Laser Communication and Detection Technology, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
An external frequency doubling electro-optically Q-switched neodymium-doped yttrium aluminum garnet (Nd:YAG) 473 nm blue laser was demonstrated. With absorbed pump energy of 48 mJ at 100 Hz repetition rate, about 2 mJ of 473 nm blue laser pulse energy was achieved by cascade frequency doubling. The second harmonic conversion efficiency was 64.5%, and overall optical-optical efficiency was 4.2%, respectively. The blue laser pulse width was less than 10 ns, and beam quality factor was less than 2.4.
140.3540 Lasers, Q-switched 140.3515 Lasers, frequency doubled 140.3530 Lasers, neodymium 140.3480 Lasers, diode-pumped 
Chinese Optics Letters
2019, 17(5): 051405
Author Affiliations
Abstract
1 Key Laboratory of High Power Laser and Physics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
2 National Laboratory on High Power Laser and Physics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
3 University of Chinese Academy of Sciences, Beijing 100049, China
A high-power, Joule-class, nanosecond temporally shaped multi-pass ring laser amplifier system with two neodymium-doped phosphate glass (Nd:glass) laser heads is demonstrated. The laser amplifier system consists of three parts: an all-fiber structure seeder, a diode-pumped Nd:glass regenerative amplifier and a multi-pass ring amplifier, where the thermally induced depolarization of two laser heads is studied experimentally and theoretically. Following the injection of a square pulse with the pulse energy of 0.9 mJ and pulse width of 6 ns, a 0.969-J high-energy laser pulse at 1 Hz was generated, which had the ability to change the waveform arbitrarily, based on the all-fiber structure front end. The experimental results show that the proposed laser system is promising to be adopted in the preamplifier of high-power laser facilities.
depolarization compensation laser amplifier neodymium laser ring laser 
High Power Laser Science and Engineering
2019, 7(1): 010000e8
Author Affiliations
Abstract
1 Department of Electronic Engineering, School of Information Science and Engineering, Xiamen University, Xiamen 361005, China
2 School of Physics and Electronic Science, Guizhou Normal University, Guiyang 550001, China
We demonstrate a dual-wavelength passively Q-switched Nd3+-doped glass fiber laser using a few-layer topological insulator Bi2Se3 as a saturable absorber (SA) for the first time, to the best of our knowledge. The laser resonator is a simple and compact linear cavity using two fiber end-facet mirrors. The SA is fabricated by Bi2Se3/polyvinyl alcohol composite film. By inserting the SA into the laser cavity, a stable Q-switching operation is achieved with the shortest pulse width and maximum pulse repetition rate of 601 ns and 205.2 kHz, respectively. The maximum average output power and maximum pulse energy obtained are about 6.6 mW and 38.8 nJ, respectively.
060.3510 Lasers, fiber 140.3540 Lasers, Q-switched 140.3530 Lasers, neodymium 
Chinese Optics Letters
2018, 16(2): 020016

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