Minghui Li 1,2Renhong Gao 1,2Chuntao Li 3,4Jianglin Guan 3,4[ ... ]Ya Cheng 1,2,3,6,7,**
Author Affiliations
Abstract
1 State Key Laboratory of High Field Laser Physics and CAS Center for Excellence in Ultra-Intense Laser Science, Shanghai Institute of Optics and Fine Mechanics (SIOM), Chinese Academy of Sciences (CAS), Shanghai 201800, China
2 Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
3 XXL—The Extreme Optoelectromechanics Laboratory, School of Physics and Electronic Science, East China Normal University, Shanghai 200241, China
4 State Key Laboratory of Precision Spectroscopy, East China Normal University, Shanghai 200062, China
5 School of Physical Science and Technology, ShanghaiTech University, Shanghai 200031, China
6 Shanghai Research Center for Quantum Sciences, Shanghai 201315, China
7 Hefei National Laboratory, Hefei 230088, China
We demonstrate single-mode microdisk lasers in the telecom band with ultralow thresholds on erbium-ytterbium co-doped thin-film lithium niobate (TFLN). The active microdisk was fabricated with high-Q factors by photolithography-assisted chemomechanical etching. Thanks to the erbium-ytterbium co-doping providing high optical gain, the ultralow loss nanostructuring, and the excitation of high-Q coherent polygon modes, which suppresses multimode lasing and allows high spatial mode overlap between pump and lasing modes, single-mode laser emission operating at 1530 nm wavelength was observed with an ultralow threshold, under a 980-nm-band optical pump. The threshold was measured as low as 1 µW, which is one order of magnitude smaller than the best results previously reported in single-mode active TFLN microlasers. The conversion efficiency reaches 4.06 × 10-3, which is also the highest value reported in single-mode active TFLN microlasers.
lithium niobate microcavities microdisk lasers 
Chinese Optics Letters
2024, 22(4): 041301
王羚 1,*高峰 1滕书华 1谭志国 1[ ... ]邓力 2,**
作者单位
摘要
1 湖南第一师范学院电子信息学院,湖南 长沙 410205
2 北京邮电大学信息与通信工程学院,北京 100876
提出一种工作于0.25~0.35 THz的介质超表面,基于该超表面、结合轨道角动量(OAM)和频率域实现双域多信道复用,理论上可实现4×NN为任意正整数)路携带不同信息的正交同轴波束的同时传输。超表面由介质柱阵列和介质基板构成,可基于Pancharatnam-Berry相位原理进行设计。选取0.25、0.3、0.35 THz三个频点进行仿真验证,结果表明:当3路具有不同频率和入射角的圆极化平面波沿4个不同方向斜入射至超表面上时,在垂直于超表面的方向上,12路交叉极化透射波被转换为彼此拓扑正交或频率正交的同轴波束,即结合OAM和频率域实现了12路信道复用。所提出的介质超表面在高速率大容量太赫兹通信领域具有潜在的应用价值。
表面光学 太赫兹 介质超表面 复用 轨道角动量 
光学学报
2023, 43(3): 0324001
作者单位
摘要
1 国家电网有限公司 信息通信分公司, 北京100761
2 国网湖北省电力有限公司 信息通信公司, 武汉 430077
3 长飞光纤光缆股份有限公司 光纤光缆制备技术国家重点实验室, 武汉 430073
G.654.E光纤应用于传输系统中, 因截止波长大以及与收发端设备的耦合方式, 可能产生多路径串扰(MPI)从而影响传输性能。为了探究MPI的影响因素, 通过窄带外腔激光器/光功率计法在1310 nm光源波长下分析了光纤类型、光纤长度、打圈条件、连接方式和尾纤类型对MPI的影响。实验结果表明: 对于短距离链路, 可通过热熔代替活动连接器以及打圈滤模来减小MPI;而对于长距离链路, 尽量避免不同类型光纤的混合连接。
光纤传输 G.654.E光纤 多路径串扰 短距离链路 长距离链路 fiber transmission, G.654.E fiber, multi-path inte 
光通信技术
2022, 46(5): 99
Jintian Lin 1,2†Saeed Farajollahi 3Zhiwei Fang 4Ni Yao 5,6[ ... ]Ya Cheng 1,2,4,7,9,10,11,*
Author Affiliations
Abstract
1 Chinese Academy of Sciences (CAS), Shanghai Institute of Optics and Fine Mechanics (SIOM), State Key Laboratory of High Field Laser Physics and CAS Center for Excellence in Ultra-Intense Laser Science, Shanghai, China
2 University of Chinese Academy of Sciences, Center of Materials Science and Optoelectronics Engineering, Beijing, China
3 University of Victoria, Department of Electrical and Computer Engineering, Victoria, British Columbia, Canada
4 East China Normal University, School of Physics and Electronic Science, XXL—The Extreme Optoelectromechanics Laboratory, Shanghai, China
5 Research Center for Intelligent Sensing, Zhejiang Lab, Hangzhou, China
6 Zhejiang University, College of Optical Science and Engineering, The Interdisciplinary Center for Quantum Information, State Key Laboratory of Modern Optical Instrumentation, Hangzhou, China
7 East China Normal University, State Key Laboratory of Precision Spectroscopy, Shanghai, China
8 Jiaxing Institute of Zhejiang University, Intelligent Optics & Photonics Research Center, Jiaxing, China
9 Shanxi University, Collaborative Innovation Center of Extreme Optics, Taiyuan, China
10 Shandong Normal University, Collaborative Innovation Center of Light Manipulations and Applications, Jinan, China
11 Shanghai Research Center for Quantum Sciences, Shanghai, China
Single-frequency ultranarrow linewidth on-chip microlasers with a fast wavelength tunability play a game-changing role in a broad spectrum of applications ranging from coherent communication, light detection and ranging, to metrology and sensing. Design and fabrication of such light sources remain a challenge due to the difficulties in making a laser cavity that has an ultrahigh optical quality (Q) factor and supports only a single lasing frequency simultaneously. Here, we demonstrate a unique single-frequency ultranarrow linewidth lasing mechanism on an erbium ion-doped lithium niobate (LN) microdisk through simultaneous excitation of high-Q polygon modes at both pump and laser wavelengths. As the polygon modes are sparse within the optical gain bandwidth compared with the whispering gallery mode counterpart, while their Q factors (above 10 million) are even higher due to the significantly reduced scattering on their propagation paths, single-frequency lasing with a linewidth as narrow as 322 Hz is observed. The measured linewidth is three orders of magnitude narrower than the previous record in on-chip LN microlasers. Finally, enabled by the strong linear electro-optic effect of LN, real-time electro-optical tuning of the microlaser with a high tuning efficiency of ∼50 pm / 100 V is demonstrated.
lasers lithium niobate microcavities integrated optics 
Advanced Photonics
2022, 4(3): 036001
作者单位
摘要
北京应用物理与计算数学研究所, 北京 100094
蒙特卡罗(MC)方法具有复杂几何处理能力强,方法通用灵活,核数据完备,模拟忠实于物理过程等特点,成为中子学数值模拟的首选方法之一。在核能领域,MC方法得益于计算机的快速发展,在辐射屏蔽、反应堆堆芯临界安全分析、乏燃料后处理、放射性废物处置、核设施退役、核事故应急、放射性石油测井、核医学等领域均有广泛应用。对MC方法及软件输运计算做简要回顾,并对未来发展进行展望。
核工程 粒子输运 MC方法及软件 展望 nuclear engineering particle transport Monte Carlo method and software outlook 
强激光与粒子束
2022, 34(2): 026001
Renhong Gao 1,6Ni Yao 2Jianglin Guan 3,4Li Deng 3,4[ ... ]Ya Cheng 1,3,4,6,7,8,9,**
Author Affiliations
Abstract
1 State Key Laboratory of High Field Laser Physics and CAS Center for Excellence in Ultra-Intense Laser Science, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences (CAS), Shanghai 201800, China
2 Research Center for Intelligent Sensing, Zhejiang Lab, Hangzhou 311100, China
3 XXL—The Extreme Optoelectromechanics Laboratory, School of Physics and Electronic Science, East China Normal University, Shanghai 200241, China
4 State Key Laboratory of Precision Spectroscopy, East China Normal University, Shanghai 200062, China
5 State Key Laboratory of Modern Optical Instrumentation, College of Optical Science and Engineering, Zhejiang University, Hangzhou 310027, China
6 Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
7 Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan 030006, China
8 Collaborative Innovation Center of Light Manipulations and Applications, Shandong Normal University, Jinan 250358, China
9 Shanghai Research Center for Quantum Sciences, Shanghai 201315, China
We demonstrate integrated lithium niobate (LN) microring resonators with Q factors close to the intrinsic material absorption limit of LN. The microrings are fabricated on pristine LN thin-film wafers thinned from LN bulk via chemo-mechanical etching without ion slicing and ion etching. A record-high Q factor up to 108 at the wavelength of 1550 nm is achieved because of the ultra-smooth interface of the microrings and the absence of ion-induced lattice damage, indicating an ultra-low waveguide propagation loss of 0.0034 dB/cm. The ultra-high Q microrings will pave the way for integrated quantum light source, frequency comb generation, and nonlinear optical processes.
lithium niobate microcavities waveguide 
Chinese Optics Letters
2022, 20(1): 011902
作者单位
摘要
中国电子科技集团公司 第二十四研究所, 重庆 400060
介绍了一种提升表面贴装元件粘胶加固工艺质量的方法。归纳了表征表面贴装元件粘胶加固工艺质量的关键指标,通过正交试验优化了胶体固化工艺,大幅提升了片式元件粘胶加固的工艺质量一致性。观察了改进前后胶体分布情况,以及胶体流淌对周边元器件的影响,简要分析了胶体固化工艺对粘胶加固质量的影响机理。
元件粘胶加固 粘接剂固化工艺 正交试验 reinforced component with glue glue curing process orthogonal experiment 
微电子学
2021, 51(2): 240
作者单位
摘要
1 中国电子科技集团公司 第二十四研究所, 重庆 400060
2 模拟集成电路国家级重点实验室, 重庆 400060
在现代高性能模拟集成电路设计中, 噪声水平是影响电路性能的关键因素之一。研究了双多晶自对准高速互补双极NPN器件中发射极结构对器件直流和低频噪声性能的影响。实验结果表明, 多晶硅发射极与单晶硅界面超薄氧化层以及发射极几何结构是影响多晶硅发射极双极器件噪声性能的主要因素。
1/f噪声 双极器件 界面氧化层 1/f noise bipolar transistor interfacial oxide 
微电子学
2021, 51(6): 929
杨勇 1,2彭凯 1,2邓力 2谭品恒 1,2[ ... ]余波 1
作者单位
摘要
1 中国电子科技集团 重庆声光电有限公司, 重庆 400060
2 中国电子科技集团公司第二十六研究所, 重庆 400060
曲面电极刻蚀技术是半球谐振陀螺的关键技术之一。为满足半球谐振陀螺高精度和高性能的要求, 针对激励罩和读出基座的电极刻蚀工艺, 该文提出了一种新的调整方法——三维平衡调整法。通过X、Y、Z方向的位移传感器检测器件与参考平台的间距, 根据间隙差距的大小进行相应的调整。试验验证表明, 该方法能有效减小半球谐振陀螺电极刻蚀的误差, 满足器件的各项性能参数。该方法原理简单, 具有定位精度高, 工艺易实现的优点, 对半球谐振陀螺电极刻蚀工艺具有较好的工程应用价值。
半球谐振陀螺 电极刻蚀 平衡调整 误差 激光位移传感器 hemispherical resonator gyro(HRG) electrode-etching balancing error laser displacement sensor 
压电与声光
2021, 43(3): 336
邓黎 1李伯中 1金炜 1马超 1[ ... ]龙函 2
作者单位
摘要
1 国家电网有限公司 信息通信分公司,北京 100761
2 武汉光迅科技股份有限公司,武汉 430205
针对光纤非线性补偿中低通滤波器对数字后向传输(DBP)算法复杂度与补偿精度的影响,研究了256 Gb/s偏振复用16阶正交振幅调制(PDM-16QAM)信号在采用贝塞尔、高斯和巴特沃斯低通滤波器时的非线性补偿特性。实验结果表明:当步长较小时,3种低通滤波器对DBP算法影响基本一致;当步长较大时,高阶贝塞尔低通滤波器的性能最佳。此外,当低通滤波器阶数为1、3 dB带宽固定为8 GHz和步长大于40 km时,高斯低通滤波器比其它2种低通滤波器的Q因子高约0.1 dB。
相干光通信 低通滤波器 非线性 单模光纤 数字后向传输 coherent optical communications low pass filter nonlinearity single mode fiber digital backward transmission 
光通信技术
2021, 47(7): 10

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