Author Affiliations
Abstract
1 Laboratory of Infrared Materials and Devices, Research Institute of Advanced Technologies, Ningbo University, Ningbo 315211, China
2 Engineering Research Center for Advanced Infrared Photoelectric Materials and Devices of Zhejiang Province, Ningbo University, Ningbo 315211, China
3 Department of Quantum Science and Technology, Research School of Physics, Australian National University, Canberra ACT 2601, Australia
4 School of Physics and Optoelectronics Engineering, Xidian University, Xi’an 710071, China
Three-dimensional (3D) nonlinear photonic crystals have received intensive interest as an ideal platform to study nonlinear wave interactions and explore their applications. Periodic fork-shaped gratings are extremely important in this context because they are capable of generating second-harmonic vortex beams from a fundamental Gaussian wave, which has versatile applications in optical trapping and materials engineering. However, previous studies mainly focused on the normal incidence of the fundamental Gaussian beam, resulting in symmetric emissions of the second-harmonic vortices. Here we present an experimental study on second-harmonic vortex generation in periodic fork-shaped gratings at oblique incidence, in comparison with the case of normal incidence. More quasi-phase-matching resonant wavelengths have been observed at oblique incidence, and the second-harmonic emissions become asymmetric against the incident beam. These results agree well with theoretic explanations. The oblique incidence of the fundamental wave is also used for the generation of second-harmonic Bessel beams with uniform azimuthal intensity distributions. Our study is important for a deeper understanding of nonlinear interactions in a 3D periodic medium. It also paves the way toward achieving high-quality structured beams at new frequencies, which is important for manipulation of the orbital angular momentum of light.
second-harmonic generation nonlinear photonic crystal periodically poled ferroelectric crystal quasi-phase matching nonlinear wavefront shaping 
Chinese Optics Letters
2024, 22(4): 041902
Author Affiliations
Abstract
1 SwissFEL, Paul Scherrer Institute, Villigen PSI, Switzerland
2 Photonics Institute, Technische Universität Wien, Vienna, Austria
3 Institute of Applied Physics, University of Bern, Bern, Switzerland
4 Institute for Quantum Electronics, Physics Department, ETH Zurich, Zurich, Switzerland
We demonstrate the generation, spectral broadening and post-compression of second harmonic pulses using a thin beta barium borate (BBO) crystal on a fused-silica substrate as the nonlinear interaction medium. By combining second harmonic generation in the BBO crystal with self-phase modulation in the fused-silica substrate, we efficiently generate millijoule-level broadband violet pulses from a single optical component. The second harmonic spectrum covers a range from long wave ultraviolet (down to 310 nm) to visible (up to 550 nm) with a bandwidth of 65 nm. Subsequently, we compress the second harmonic beam to a duration of 4.8 fs with a pulse energy of 0.64 mJ (5 fs with a pulse energy of 1.05 mJ) using chirped mirrors. The all-solid free-space apparatus is compact, robust and pulse energy scalable, making it highly advantageous for generating intense second harmonic pulses from near-infrared femtosecond lasers in the sub-5 fs regime.
post-compression second harmonic generation self-phase modulation supercontinuum generation 
High Power Laser Science and Engineering
2024, 12(2): 02000e16
王金艳 1马放 1郑磊 1田东贺 1[ ... ]郑权 1,2
作者单位
摘要
1 长春新产业光电技术有限公司, 吉林 长春 130103
2 中国科学院长春光学精密机械与物理研究所, 吉林 长春 130033
紫外激光器是研究紫外共振拉曼光谱的重要工具,拉曼信号可以通过共振拉曼效应得到增强,从而降低拉曼测量的探测极限。本文研究了一种输出波长为228 nm的窄脉宽全固态紫外激光器。首先,以Nd:YVO4作为增益介质,采用电光调Q腔倒空技术,实现了纳秒量级914 nm基频光输出。然后,经过偏硼酸锂(LBO)晶体产生二次谐波,最终经偏硼酸钡(BBO)晶体获得四次谐波228 nm紫外激光。在此基础上,进一步研究了不同重复频率时基频光和倍频光功率的变化规律,优化了紫外激光器的输出效率。实验结果表明:当总抽运功率为30 W时,在10 kHz重复频率下,可获得最高平均功率为84 mW的228 nm紫外激光输出。228 nm激光在5~25 kHz重复频率范围内连续可调,脉冲宽度保持在2.8~2.9 ns,能够满足紫外光谱检测技术领域的应用需求。
228 nm激光器 紫外激光 腔倒空技术 二次谐波 228 nm laser ultraviolet laser cavity dumped laser second harmonic 
中国光学
2024, 17(1): 100
Author Affiliations
Abstract
1 State Key Laboratory of Advanced Optical Communication Systems and Networks, School of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai 200240, China
2 School of Electronic and Electrical Engineering, Shanghai University of Engineering Science, Shanghai 201620, China
3 Shanghai Research Center for Quantum Sciences, Shanghai 201315, China
4 Collaborative Innovation Center of Light Manipulations and Applications, Shandong Normal University, Jinan 250358, China
Whispering-gallery-mode (WGM) microresonators can greatly enhance light–matter interaction, making them indispensable units for frequency conversion in nonlinear optics. Efficient nonlinear wave mixing in microresonators requires stringent simultaneous optical resonance and phase-matching conditions. Thus, it is challenging to achieve efficient frequency conversion over a broad bandwidth. Here, we demonstrate broadband second-harmonic generation (SHG) in the x-cut thin-film lithium niobate (TFLN) microdisk with a quality factor above 107 by applying the cyclic quasi-phase-matching (CQPM) mechanism, which is intrinsically applicable for broadband operation. Broadband SHG of continuous-wave laser with a maximum normalized conversion efficiency of ∼15%/mW is achieved with a bandwidth spanning over 100 nm in the telecommunication band. Furthermore, broadband SHG of femtosecond lasers, supercontinuum lasers, and amplified spontaneous emission in the telecommunication band is also experimentally observed. The work is beneficial for integrated nonlinear photonics devices like frequency converters and optical frequency comb generator based on second-order nonlinearity on the TFLN platform.
lithium niobate whispering-gallery mode broadband second-harmonic generation cyclic quasi-phase matching 
Chinese Optics Letters
2024, 22(3): 031903
Jing Zeng 1,2Sen Wang 1,2Ruwei Zhao 1,2Yongxing Liu 1,2[ ... ]Tianxiang Xu 1,2,**
Author Affiliations
Abstract
1 Laboratory of Infrared Materials and Devices, Research Institute of Advanced Technologies, Ningbo University, Ningbo 315211, China
2 Zhejiang Key Laboratory of Photoelectric Materials and Devices, Ningbo University, Ningbo 315211, China
3 Ningbo Institute of Oceanography, Ningbo 315832, China
4 Department of Quantum Science and Technology, Research School of Physics, Australian National University, Canberra, ACT 2601, Australia
The design of nonlinear photonic Vogel’s spiral based on quasi-crystal theory was demonstrated. Two main parameters of Vogel’s spiral were arranged to obtain multi-reciprocal circles. Typical structure was fabricated by the near-infrared femtosecond laser poling technique, forming a nonlinear photonic structure, and multiple ring-like nonlinear Raman–Nath second-harmonic generation processes were realized and analyzed in detail. The structure for the cascaded third-harmonic generation process was predicted. The results could help deepen the understanding of Vogel’s spiral and quasi-crystal and pave the way for the combination of quasi-crystal theory with more aperiodic structures.
nonlinear photonic quasi-crystal second-harmonic generation Vogel’s spiral nonlinear Raman–Nath diffraction femtosecond laser poling 
Chinese Optics Letters
2024, 22(3): 031902
作者单位
摘要
国防科技大学理学院,湖南 长沙 410073
采用化学气相沉积方法和逆向气流策略,成功地可控合成了均匀、平整、结晶良好的单层、2H相、3R相以及螺旋结构硒化钨(WSe2)单晶,利用光学显微镜、原子力显微镜、拉曼和光致发光光谱等表征进行测试分析,证实了WSe2具有优异的晶体质量。通过精确控制炉腔温度分布实现了不同原子层堆垛方式的生长调控,利用过饱和度理论分析推测出螺旋堆垛及位错臂的数量与不同过饱和度分布之间的关系,在螺旋的WSe2结构中观测到了两个数量级的二次谐波产生(SHG)增强,通过SHG偏振特性表征螺旋结构的偏转角度,揭示了层间耦合作用和内部应变对螺旋堆垛的影响,有助于推动二维半导体多相可控生长和光电物性调控研究。
材料 过渡金属硫族化合物 逆向气流化学气相沉积 螺旋堆垛 二次谐波产生 
光学学报
2024, 44(4): 0416002
Author Affiliations
Abstract
1 Key Laboratory for Laser Plasma, Shanghai Jiao Tong University, Shanghai 200240, China
2 Key Laboratory of Micro and Nano Photonic Structures, Fudan University, Shanghai 200433, China
3 Tsung-Dao Lee Institute, Shanghai Jiao Tong University, Shanghai 200240, China
We propose a spatially chirped quasi-phase-matching (QPM) scheme that enables ultrabroadband second-harmonic-generation (SHG) by using a fan-out QPM grating to frequency-convert a spatially chirped fundamental wave. A “zero-dispersion” 4f system maps the spectral contents of ultrabroadband fundamental onto different spatial coordinates in the Fourier plane, where the fundamental is quasi-monochromatic locally in picosecond duration, fundamentally canceling high-order phase mismatch. A fan-out QPM grating characterized by a linear variation of the poling period along the transverse direction exactly supports the QPM of the spatially chirped beam. We theoretically demonstrate the SHG of an 810-nm, 12.1-fs pulse into a 405-nm, 10.2-fs pulse with a conversion efficiency of 77%.
nonlinear optics second-harmonic generation few-cycle pulse 
Chinese Optics Letters
2024, 22(1): 011901
作者单位
摘要
南京邮电大学 电子与光学工程学院、柔性电子(未来技术)学院,南京210023
为了在波导中轻松实现相互作用波之间的相位匹配,产生有效的二次谐波,设计了一种新型条形波导--二氧化硅-铌酸锂-二氧化硅(SiO2-LiNbO3-SiO2),该条形波导由SiO2和无蚀刻z切割的LiNbO3组成,通过调整波导结构分析了波导的色散,研究了不同尺寸的SiO2对基波与二次谐波相位匹配点的影响,分析了该条形波导倍频的可行性,并利用脉冲的振幅和宽度对频谱展宽的特性,实现超宽带连续谱。仿真结果表明:在覆盖层SiO2宽度为1 600 nm、高度为400 nm的条形波导结构中,使用脉冲振幅为107 a.u.,脉冲宽度为10 fs的超短脉冲,得到了一个带宽为1 302.5 nm的超宽带连续谱。
铌酸锂 相位匹配 二次谐波产生 超连续谱 光通信 lithium niobate, phase matching, second harmonic g 
光通信技术
2023, 47(4): 0015
作者单位
摘要
山东工商学院信息与电子工程学院, 山东 烟台 264005
可调谐半导体激光吸收光谱 甲烷检测 二次谐波谱形 峰谷率 温度、 压强变化 Tunable diode laser absorption spectroscopy CH4 detection Second harmonic spectral shape Line profile approximation Temperature and pressure changes 
光谱学与光谱分析
2023, 43(6): 1683
陈蕾 1,*向进 2赵年 3,**陈同生 4
作者单位
摘要
1 佛山科学技术学院物理与光电工程学院,广东 佛山 528000
2 重庆大学光电工程学院,光电技术及系统教育部重点实验室,重庆 400044
3 湘潭大学物理与光电工程学院,湖南 湘潭 411105
4 华南师范大学生物光子学研究院,广东省激光生命科学重点实验室,广东 广州 510631
二次谐波成像作为一种高空间分辨率和高穿透深度的非线性光学成像技术,可以避免荧光成像中由能量吸收导致的光漂白和饱和吸收等问题,在临床诊断和生物医学领域具有广阔的应用前景。笔者引入了一种具有中心反演对称破缺、高非线性光学效应的材料——硅量子点作为二次谐波探针,同时为了增强硅量子点的生物亲和性并减少其表面氧化,利用聚乙二醇对硅量子点进行修饰,并将其作为生物探针探究了其在人肝癌细胞(HepG2)中的二次谐波成像效果。通过与双光子荧光成像结果进行对比发现,基于聚乙二醇修饰的硅量子点的二次谐波成像技术具有可靠性和稳定性。本研究对未来硅量子点在分子成像、药物递送和干细胞治疗中的应用具有积极的推动作用。
非线性光学 二次谐波成像 硅量子点 人肝癌细胞 生物探针 
中国激光
2023, 50(21): 2107109

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