Author Affiliations
Abstract
1 College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China
2 School of Information and Communications, National University of Defense Technology, Wuhan 430035, China
3 Nanhu Laser Laboratory, National University of Defense Technology, Changsha 410073, China
4 Hunan Provincial Key Laboratory of High Energy Laser Technology, National University of Defense Technology, Changsha 410073, China
High-power ultrafast laser amplification based on a non-polarization maintaining fiber chirped pulse amplifier is demonstrated. The active polarization control technology based on the root-mean-square propagation (RMS-prop) algorithm is employed to guarantee a linearly polarized output from the system. A maximum output power of 402.3 W at a repetition rate of 80 MHz is realized with a polarization extinction ratio (PER) of > 11.4 dB. In addition, the reliable operation of the system is verified by examining the stability and noise properties of the amplified laser. The M2 factor of the laser beam at the highest output power is measured to be less than 1.15, indicating a diffraction-limited beam quality. Finally, the amplified laser pulse is temporally compressed to 755 fs with a highest average power of 273.8 W. This is the first time, to the best of our knowledge, that the active polarization control technology was introduced into the high-power ultrafast fiber amplifier.
active polarization control root-mean-square propagation algorithm linearly polarized laser chirped pulse amplification femtosecond laser fiber laser 
Chinese Optics Letters
2024, 22(4): 041403
作者单位
摘要
1 天津大学精密仪器与光电子工程学院超快激光研究室&光电信息技术教育部重点实验室,天津 300072
2 中国计量科学研究院时间频率计量研究所,北京 100029
3 国家市场监管重点实验室(时间频率与重力计量基准),北京 100029
4 吉林大学电子科学与工程学院集成光电子学国家重点实验室,吉林 长春 130012
中红外飞秒光学频率梳在天文学、药物检测、生物化学、大气检测和材料科学等领域中有着广阔的应用前景。报道了一个高功率中红外飞秒光学频率梳系统,该系统主要由掺铒光纤飞秒光学频率梳、超连续谱产生装置、双包层掺铥光纤放大器和基于透射式衍射光栅对的压缩器四部分构成。掺铒光纤光学频率梳输出平均功率为350 mW、中心波长为1565 nm、重复频率为198 MHz、脉冲宽度为55 fs的飞秒激光,并将其注入到一段正色散高非线性光纤中,产生1100~2200 nm超连续光谱。超连续光通过由掺铥光纤构成的自泵浦放大器,产生中心波长为1925 nm、平均功率为50 mW的飞秒脉冲。将此脉冲作为双包层掺铥光纤放大器的种子源,功率被放大到36.07 W,压缩后得到平均功率为22.72 W、脉冲宽度为240 fs的飞秒激光脉冲输出。
非线性光学 光学频率梳 飞秒激光 啁啾脉冲放大 中红外波段 
中国激光
2024, 51(5): 0508002
徐明霞 1†于浩海 *†路大治 孙洵 **[ ... ]张怀金 
作者单位
摘要
山东大学晶体材料国家重点实验室,山东 济南 250100
以磷酸二氢钾(KDP)/磷酸二氘钾(DKDP)、三硼酸锂(LBO)、硼酸氧钙钇(YCOB)和硅酸镓镧族铌酸镓镧(LGN)为代表的非线性光学晶体已经在紫外到中红外的系列激光技术中获得了重要应用,长期受到国内外同行的广泛关注,其品质的提升和口径的扩大成为了当前国际竞争的焦点。着眼于强激光的重要需求,综述了KDP/DKDP、LBO、YCOB和LGN等重要非线性光学晶体的研究现状,介绍了其在大尺寸单晶生长及非线性光学性能等方面的研究进展,分析其在强激光非线性光学领域的应用前景。最后讨论了强激光用非线性光学晶体可能的发展方向和重点。
非线性光学 非线性光学晶体 晶体生长 频率转换 光参量啁啾脉冲放大 
激光与光电子学进展
2024, 61(1): 0116004
作者单位
摘要
中国工程物理研究院激光聚变研究中心等离子体物理科学与技术实验室,四川 绵阳 621900
在基于光参量啁啾脉冲放大的拍瓦级超短超强飞秒激光装置中,光参量相位是阻碍脉冲时域压缩的关键因素。对中国工程物理研究院的数拍瓦全光参量啁啾脉冲放大装置(SILEX-II)的光参量相位演化进行了详细研究。研究结果表明,通过光参量放大过程累积的群延迟色散高达532 fs2,三阶色散高达5782 fs3,在未补偿光参量相位的情况下,压缩脉冲的时域峰值强度仅为傅里叶变换极限脉冲的43%。通过调节压缩器光栅间距,补偿了光参量相位的群延迟色散,将压缩脉冲的时域峰值强度增加至傅里叶变换极限脉冲的94%。研究结果为SILEX-II激光装置的脉冲时域压缩提供了有效指导,同时也为未来基于全光参量啁啾脉冲放大技术的10~100 PW高峰值功率激光器的设计提供了依据。
激光器 光参量啁啾脉冲放大 光参量相位 时域压缩 傅里叶变换极限脉冲 
中国激光
2024, 51(6): 0601005
沈辉 1,2潘其坤 1,*张冉冉 1赵崇霄 1[ ... ]郭劲 1
作者单位
摘要
1 中国科学院长春光学精密机械与物理研究所激光与物质相互作用国家实验室;吉林 长春 130033
2 中国科学院大学,北京 100049
为了提升激光等离子体极紫外光刻机光源中高重复频率、短脉冲CO2主振荡功率放大系统能量提取效率,需开展种子光光强截面分布与激光放大器增益分布的耦合匹配特性研究。基于欧拉-拉格朗日公式与Frantz-Nodvik方程,采用变分法求解了特定增益分布下最优种子光光强分布函数,研究了种子光半径、种子光光强分布与放大器增益分布对功率提取效率的影响。数值模拟表明:当脉冲种子光功率为500 W时,基模高斯光束的最优光束半径为0.54 cm,低功率种子光的最优光束半径与放大器增益宽度不相等;当脉冲种子光功率为2000 W时,高阶超高斯光束的最优光束半径接近增益区域半径,8阶超高斯光束对应的最佳光束半径为0.9 cm,功率提取值为3409 W,采用高阶的增益分布和与之匹配的超高斯光束能够极大提升放大器的能量提取值。该研究结果将为脉冲CO2主振荡功率放大系统的设计提供理论指导。
极紫外光源 CO2激光 脉冲放大 增益-光强匹配 变分法 
激光与光电子学进展
2023, 60(23): 2314008
Bo Ren 1Can Li 1,*Tao Wang 1Kun Guo 1[ ... ]Pu Zhou 1,*
Author Affiliations
Abstract
1 College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha, China
2 Nanhu Laser Laboratory, National University of Defense Technology, Changsha, China
3 Hunan Provincial Key Laboratory of High Energy Laser Technology, National University of Defense Technology, Changsha, China
A high-power all polarization-maintaining (PM) chirped pulse amplification (CPA) system operating in the 2.0 μm range is experimentally demonstrated. Large mode area (LMA) thulium-doped fiber (TDF) with a core/cladding diameter of 25/400 μm is employed to construct the main amplifier. Through dedicated coiling and cooling of the LMA-TDF to manage the loss of the higher order mode and thermal effect, a maximum average power of 314 W with a slope efficiency of 52% and polarization extinction ratio of 20 dB is realized. The pulse duration is compressed to 283 fs with a grating pair, corresponding to a calculated peak power of 10.8 MW, considering the compression efficiency of 88% and the estimated Strehl ratio of 89%. Moreover, through characterizing the noise properties of the laser, an integrated relative intensity noise of 0.11% at 100 Hz-1 MHz is obtained at the maximum output power, whereas the laser timing jitter is degraded by the final amplifier from 318 to 410 fs at an integration frequency of 5 kHz to 1 MHz, owing to the self-phase modulation effect-induced spectrum broadening. The root-mean-square of long-term power fluctuation is tested to be 0.6%, verifying the good stability of the laser operation. To the best of our knowledge, this is the highest average power of an ultrafast laser realized from an all-PM-fiber TDF-CPA system ever reported.
chirped pulse amplification high average power thulium-doped fiber laser ultrafast laser 
High Power Laser Science and Engineering
2023, 11(6): 06000e73
Author Affiliations
Abstract
College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha, China
An all-fiber high-power linearly polarized chirped pulse amplification (CPA) system is experimentally demonstrated. Through stretching the pulse duration to a full width of approximately 2 ns with two cascaded chirped fiber Bragg gratings (CFBGs), a maximum average output power of 612 W is achieved from a high-gain Yb-doped fiber that has a core diameter of 20 μm with a slope efficiency of approximately 68% at the repetition rate of 80 MHz. At the maximum output power, the polarization degree is 92.5% and the M2 factor of the output beam quality is approximately 1.29; the slight performance degradations are attributed to the thermal effects in the main amplifier. By optimizing the B-integral of the amplifier and finely adjusting the higher-order dispersion of one of the CFBGs, the pulse width is compressed to 863 fs at the highest power with a compression efficiency of 72%, corresponding to a maximum compressed average power of 440.6 W, single pulse energy of 5.5 μJ and peak power of about 4.67 MW. To the best of our knowledge, this is the highest average power of a femtosecond laser directly generated from an all-fiber linearly polarized CPA system.
chirped pulse amplification femtosecond laser fiber laser high-power laser ultrafast laser 
High Power Laser Science and Engineering
2023, 11(2): 02000e25
作者单位
摘要
华中光电技术研究所-武汉光电国家研究中心, 湖北 武汉 430223
绿光波段的飞秒激光一般使用钛蓝宝石飞秒激光器通过倍频产生, 但是钛蓝宝石激光器价格高昂, 且其固体体制稳定性较差, 限制了飞秒绿光激光器的使用范围。采用基于SESAM被动锁模的光纤飞秒种子源和啁啾脉冲放大(Chirped Pulse Amplification, CPA)技术产生1 030 nm的基频光, 经过压缩倍频后, 实现了脉宽357 fs、平均功率2.187 W的515 nm飞秒激光输出。该飞秒激光器具备基频光与倍频光双波长切换输出的能力, 且具有体积紧凑、脉冲稳定、转换效率较高、光束质量良好的优势, 可作为超快激光加工系统的光源。
被动锁模 飞秒激光 绿光 啁啾脉冲放大 倍频 passive mode locking femtosecond laser green laser chirped pulse amplification frequency doubling 
光学与光电技术
2023, 21(1): 89
作者单位
摘要
1 西南交通大学物理科学与技术学院,成都 四川 610031
2 信号盲处理国家级重点实验室,成都 四川 610041
3 西南交通大学信息科学与技术学院,成都 四川 610031
全光纤超短脉冲啁啾放大技术在激光技术和超快光学领域备受关注。针对传统数值方法分析光纤中超短脉冲啁啾放大过程存在计算量大、效率低等问题,采用深度学习方法开展全光纤超短脉冲啁啾放大过程建模研究。首先分析脉冲啁啾参量等参数对超短光脉冲传输过程的影响。预训练设计的深度神经网络模型,分析网络对不同初始脉冲啁啾参量的预测精度,进一步探索了不同初始脉冲半峰全宽、峰值功率和啁啾参量等复杂情况下网络的泛化性及预测精度。本研究拓宽了数据驱动方法在激光行为预测方面的应用,为光纤中超短脉冲的特性研究提供了新思路。
非线性光学 光纤参量啁啾脉冲放大 卷积神经网络 非线性薛定谔方程 
光学学报
2023, 43(3): 0319001
Author Affiliations
Abstract
1 GSI Helmholtzzentrum für Schwerionenforschung GmbH, Darmstadt, Germany
2 Technische Universität Darmstadt, Darmstadt, Germany
3 Helmholtz-Institut Jena, Jena, Germany
In this work, we propose and verify experimentally a model that describes the concomitant influence of the beam size and optical roughness on the temporal contrast of optical pulses passing through a pulse stretcher in chirped-pulse amplification laser systems. We develop an analytical model that is capable of predicting the rising edge caused by the reflection from an optical element in a pulse stretcher, based on the power spectral density of the surface and the spatial beam profile on the surface. In an experimental campaign, we characterize the temporal contrast of a laser pulse that passed through either a folded or an unfolded stretcher design and compare these results with the analytical model. By varying the beam size for both setups, we verify that optical elements in the near- and the far-field act opposed to each with respect to the temporal contrast and that the rising edge caused by a surface benefits from a larger spatial beam size on that surface.
chirped-pulse amplification laser stretcher temporal contrast 
High Power Laser Science and Engineering
2022, 10(6): 06000e34

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