Author Affiliations
Abstract
1 Key Laboratory of Space Laser Communication and Detection Technology, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
2 Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
3 Pilot National Laboratory for Marine Science and Technology, Qingdao 266237, China
A single-resonant low-threshold type-I β-Ba2BO4 (BBO) optical parametric oscillator (OPO) with tunable output from 410 nm to 630 nm at 5 kHz repetition rate is reported. By taking the noncollinear phase matching method, low-threshold OPO operation could be obtained compared with the configuration of collinear phase matching, and the maximum optical–optical conversion efficiency of 11.8% was achieved at 500 nm wavelength when 0.4 mJ pump pulse energy was applied. When the noncollinearity angle was preset at 1.6°, 4.8°, and 6.3°, a continuously tuning output with a total spectral range of 220 nm was successfully obtained by adjusting the phase matching angle of the BBO crystal.
optical parametric oscillator noncollinear phase matching low threshold high pulse repetition frequency widely tunable spectrum range 
Chinese Optics Letters
2022, 20(2): 021403
作者单位
摘要
中国工程物理研究院 激光聚变研究中心,四川 绵阳 621900
宽带光打靶可以有效降低激光等离子体相互作用过程中非线性效应。提出一种基于角色散的非共线匹配宽带三倍频方案,利用宽带基频与窄带二倍频的非共线和频产生宽带三倍频,和频过程中通过特殊设计的渐变光栅实现不同频率的基频光束以特定角度入射,补偿了波长差异引入的位相失配使得全波段满足位相匹配条件。理论模拟表明,采用KDP晶体Ⅱ类位相匹配,将中心波长为1058 nm、带宽10 nm的宽带基频光与526.5 nm的二倍频光进行非共线匹配和频,可以实现高效宽带三倍频转换。
三倍频 宽带激光 非共线匹配 高功率激光 third-harmonic generation broadband laser noncollinear matching high power laser 
强激光与粒子束
2021, 33(7): 071003
Author Affiliations
Abstract
1 GoLP/Instituto de Plasmas e Fusão Nuclear, Instituto Superior Tecnico, Universidade de Lisboa, 1049-001 Lisboa, Portugal
2 Central Laser Facility, Science and Technology Facilities Council, Rutherford Appleton Laboratory, Harwell Science and Innovation Campus, Didcot, UK
3 INFN-LNF, Via Enrico Fermi 54, 00044 Frascati, Italy
We evaluate and demonstrate ultra-broadband near-infrared noncollinear optical parametric amplification in two nonlinear crystals, bismuth borate (BiBO) and yttrium calcium oxyborate (YCOB), which are not commonly used for this application. The spectral bandwidth is of the microjoule level; the amplified signal is ≥ 200 nm, capable of supporting sub-10 fs pulses. These results, supported by numerical simulations, show that these crystals have a great potential as nonlinear media in both low-energy, few-cycle systems and high peak power amplifiers for terawatt to petawatt systems based on noncollinear optical parametric chirped pulse amplification (NOPCPA) or a hybrid.
ultrafast laser high power laser nonlinear optics ultra-broadband noncollinear OPA YCOB and BiBO nonlinear crystal 
High Power Laser Science and Engineering
2020, 8(3): 03000e29
Author Affiliations
Abstract
1 Shenzhen University, College of Physics and Optoelectronic Engineering, Shenzhen Key Lab of Micro-Nano Photonic Information Technology, Shenzhen, China
2 Shenzhen University, College of Electronic Information Engineering, Shenzhen, China
3 Institut National de la Recherche Scientifique, Centre Énergie Matériaux Télécommunications, Laboratory of Applied Computational Imaging, Varennes, Québec, Canada
We report a framing imaging based on noncollinear optical parametric amplification (NCOPA), named FINCOPA, which applies NCOPA for the first time to single-shot ultrafast optical imaging. In an experiment targeting a laser-induced air plasma grating, FINCOPA achieved 50 fs-resolved optical imaging with a spatial resolution of ~83 lp / mm and an effective frame rate of 10 trillion frames per second (Tfps). It has also successfully visualized an ultrafast rotating optical field with an effective frame rate of 15 Tfps. FINCOPA has simultaneously a femtosecond-level temporal resolution and frame interval and a micrometer-level spatial resolution. Combining outstanding spatial and temporal resolutions with an ultrahigh frame rate, FINCOPA will contribute to high-spatiotemporal resolution observations of ultrafast transient events, such as atomic or molecular dynamics in photonic materials, plasma physics, and laser inertial-confinement fusion.
ultrafast imaging spatiotemporal resolution frame rate noncollinear optical parametric amplification 
Advanced Photonics
2020, 2(5): 056002
Author Affiliations
Abstract
1 Shenzhen Key Laboratory of Micro-Nano Photonic Information Technology, College of Physics and Optoelectronics Engineering, Shenzhen University, Shenzhen518060, China
2 College of Electronic and Information Engineering, Shenzhen University, Shenzhen518060, China
A tunable ultrafast intensity-rotating optical field is generated by overlapping a pair of 20 Hz, 800 nm chirped pulses with a Michelson interferometer (MI). Its rotating rate can be up to 10 trillion radians per second ($\text{Trad}/\text{s}$), which can be flexibly tuned with a mirror in the MI. Besides, its fold rotational symmetry structure is also changeable by controlling the difference from the topological charges of the pulse pair. Experimentally, we have successfully developed a two-petal lattice with a tunable rotating speed from $3.9~\text{Trad}/\text{s}$ up to $11.9~\text{Trad}/\text{s}$, which is confirmed by our single-shot ultrafast frame imager based on noncollinear optical-parametric amplification with its highest frame rate of 15 trillion frames per second (Tfps). This work is carried out at a low repetition rate. Therefore, it can be applied at relativistic, even ultrarelativistic, intensities, which usually operate in low repetition rate ultrashort and ultraintense laser systems. We believe that it may have application in laser-plasma-based accelerators, strong terahertz radiations and celestial phenomena.
noncollinear optical-parametric amplification rotating rate ultrafast frame imager ultrafast intensity-rotating optical field 
High Power Laser Science and Engineering
2020, 8(1): 010000e3
Author Affiliations
Abstract
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
The non-collinear phase-matching of 808 nm centered optical parametric amplification(OPA) is analyzed in detail in potassium dideuterium phosphate (DKDP) crystal. Phase-matching parameters for various deuteration DKDP crystals are calculated based on the concepts. Optical parametric chirped pulse amplifier(OPCPA) based on 95% deuteration DKDP crystal is designed and the output characteristics are simulated by OPA coupled wave equations for further discuss. It is concluded that DKDP crystals higher than 90% deuteration level can be utilized in ultra-short high power laser systems with compressed pulses broader than 30 fs. The disadvantage is that the acceptance angles are small, increasing the difficulty of engineering regulation.
非线性光学 光参量啁啾脉冲放大 非共线相位匹配 超宽带 氘化磷酸二氢钾 nonlinear optics optical parametric chirped pulse amplification noncollinear phase matching ultrabroadband potassium dideuterium phosphate 
Collection Of theses on high power laser and plasma physics
2015, 13(1): 1219002
作者单位
摘要
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
针对在808 nm 波段的光参量放大系统(OPA),详细分析了氘化磷酸二氢钾(DKDP)晶体非共线相位匹配的非线性过程。通过数值计算,给出了不同氘化率的DKDP 晶体参量匹配特性以及匹配参数;在此基础上,利用OPA 耦合波方程组分析了基于氘化率为95%的DKDP晶体的光参量啁啾脉冲放大器(OPCPA)的输出特性。结果显示,对大于30 fs 压缩脉宽的超短脉冲激光系统,氘化率为90%以上的DKDP 晶体具有足够的增益带宽与能量提取效率,但接收角较小,增加了工程调节难度。
非线性光学 光参量啁啾脉冲放大 非共线相位匹配 超宽带 氘化磷酸二氢钾 
光学学报
2015, 35(12): 1219002
作者单位
摘要
中国科学院安徽光学精密机械研究所 中国科学院通用光学定标与表征技术重点实验, 安徽 合肥 230031
针对近些年发展的相关光子定标方法在光学计量方面的应用需求,在理论上分析了I类非共线自发参量下转换(SPDC)光谱的 分布,并考虑完全相位匹配和相位失配两种情况下, 355 nm连续激光光源泵浦I类非共线BBO晶体产生自发 参量下转换信号光的分布曲线。数值模拟结果表明,这两种情况下,I类非共线SPDC产生的光谱分布一致。最 后设计了SPDC光谱分布测量实验,实验表明, I类非共线SPDC光谱分布与数值模拟结果相同。
自发参量下转换 I类非共线匹配 光谱分布 spontaneous parametric down-conversion type-I noncollinear phase-matching spectral distribution 
大气与环境光学学报
2013, 8(3): 203
作者单位
摘要
福建师范大学物理与光电信息科技学院, 医学光电科学与技术教育部重点实验室,福建省光子技术重点实验室, 福建 福州 350007
根据对二氧化碲声光材料特性的不同考虑,存在几种不同的非共线声光可调谐滤波器(AOTF)设计理论。分析和比较了3种常用的非共线声光作用关系,研究结果表明,在近红外波段,P. A. Gass非共线声光作用关系能较准确地反映AOTF各参数之间的关系。选取P. A.Gass理论作为设计基础,针对0.8~2.0 μm非共线AOTF,阐述了入射光极角选择、色散补偿以及几何参数选择等优化设计方法;给出了0.8~2.0 μm非共线AOTF的设计参数,理论计算各项性能指标保持在较好水平,表明了P. A. Gass理论对该波段AOTF设计的适用性。对于推进近红外非共线AOTF的广泛应用具有指导意义。
光学器件 可调谐滤波器 数值分析 非共线 声光材料 
中国激光
2011, 38(9): 0916001
作者单位
摘要
中国科学院上海光学精密机械研究所国家高功率激光物理实验室, 上海 201800
以中心波长为1053 nm的信号光及中心波长为532 nm的抽运光光参变放大过程为例,通过数值模拟,详细分析了三硼酸氧钙钇[YCa4O(BO3)3,YCOB]晶体XOY与XOZ主平面内,非共线相位匹配的匹配特点与增益特性。按照相位匹配技术主要参数定义要求,不经近似,通过数值计算,给出了最佳非共线角、相位匹配角、参量带宽、走离角、接收角和有效非线性系数与增益带宽。结果显示,YCOB晶体具有很大的增益带宽与较大的增益,较大的接收角和小的走离角;作为增益介质,不仅可以用于大能量高功率固体激光器,也可以用于几十飞秒量级超短脉冲激光系统。
非线性光学 光参变啁啾脉冲放大 非共线相位匹配 超宽带增益 三硼酸氧钙钇晶体 
光学学报
2011, 31(1): 0119001

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