“waveguides”爱情是什么么意思

盛新庆_百度百科
本词条缺少名片图,补充相关内容使词条更完整,还能快速升级,赶紧来吧!
盛新庆,男,1968年8月出生,博士,教授,博士生导师。
主要从事计算电磁学、目标电磁特性及隐身设计、复杂环境中天线的分析与设计、电磁环境预测技术等方面的研究。在国际上率先较为系统地研究了电磁计算中的合元极方法,主持完成了“中算”电磁仿真软件,并被多家总体设计单位使用。在国内外著名学术杂志和学术会议论文集上发表学术论文200余篇,其中SCI论文70余篇,EI论文150余篇,多篇论文被国内外学者广泛引用。出版著作三本《Essentials of Computational Electromagnetics》、《计算电磁学要论》、《电磁波述论》。
目前,担任计算物理学会计算电磁学专业委员会副主任委员、国防科工局环境试验与观测专业委员会委员。
2004年受聘“长江学者奖励计划”特聘教授。[1]
盛新庆基本信息
任教专业 理学-电子信息科学类
在职情况 在职
所在院系 信息与电子学院
盛新庆简介
教授,博士生导师。2001年度中国科学院“百人计划”入选者。2004年度教育部长江学者特聘教授。
先后于1991年,1994年,1996年获电子工程与信息科学系(原名无线电电子学系),硕士,博士学位。1996年4月赴美国电机和计算机工程系的计算电磁中心作博士后研究。1998年9月参加电子工程系,先后为研究员和高级研究员。2001年12月作为“引进国外杰出人才”回国到中科院电子所工作。2005年3月作为教育部长江学者特聘教授到电子工程系工作。
主要从事计算电磁学、目标电磁特性、微波成像及遥感、天线理论及设计等方面的研究。专著一本《计算电磁学要论》,列入当代杰出青年科学文库。负责完成过多项国家自然科学基金、863、等课题。连续于1992, 1993, 1994获中国科技大学,1995年获中国科学院院长奖。
盛新庆社会兼职
国际权威杂志IEEE Transactions on Antennas and Propagation,IEEE Transactions on Geoscience and Remote Sensing 等的评审人,PIERS’2001国际会议计算电磁学分会的组织者兼主席,PIERS’2004国际会议电磁散射分会主席,ICCEA’2004国际会议技术委员会委员及天线分会主席,PIERS’2005技术委员会委员。
盛新庆代表性论文
1. Xin-Qing Sheng, K. W. Leung, and E. K. N. Yung, “Analysis of Waveguide-Fed Dielectric Resonator Antenna Using Hybrid FEM/MM,” IEE Proc. H Microwaves, Antennas and Propagation, Vol. 151, pp.91 - 95. Feb.2004.
2. H. X. Zheng, X. Q. Sheng, and E. K. N. Yung, “Computation of scattering from conducting bodies coated with chiral materials using conformal FDTD,” Journal of electromagnetic waves and application. Vol. 18, No.11, pp.04.
3. Xin-Qing Sheng and E. K. N. Yung, “Analysis of Microstrip Antennas on Finite Chiral Substrates,” International Journal of RF and Microwave Computer-Aided Engineering, Vol.14, No.1, pp. 49-56, Jan 2004.
4. Xin-Qing Sheng and E. K. N. Yung, “Implementation and experiments of a hybrid algorithm of the finite-element boundary-integral method for open-region inhomogeneous electromagnetic problems,” IEEE Trans. Antennas Propagat., vol.50, pp.163-167, Feb. 2002.
5. Xin-Qing Sheng, E. K. N. Yung, and C. H. Chan, “Parallel electromagnetic modeling of junctions between micromachined and conventional microstrip lines,’’ International Journal of RF and Microwave Computer-Aided Engineering. vol. 31, pp.38-47, 2001.
6. Xin-Qing Sheng, E. K. N. Yung, C. H. Chan, J. M. Jin, and W. C. Chew, “Scattering from large bodies with cracks and cavities by fast and accurate hybrid finite-element boundary-integral method,’’ IEEE Trans. Antennas Propaga,,. vol.48, pp. , Aug. 2000.
7. Xin-Qing Sheng, Jianming Jin, Jiming Song, Caicheng Lu, and Weng Cho Chew, “Solution of combined-field integral equation using multilevel fast multipole algorithm for scattering by homogeneous bodies,” IEEE Trans. Antennas Propagat., vol.46, pp. , Nov. 1998.
8. Xin-Qing Sheng, Jianming Jin, Jiming Song, Caicheng Lu, and Weng Cho Chew, “On the formulation of hybrid finite-element and boundary-integral method for 3D scattering,” IEEE Trans. Antennas Propagat., vol. 46, pp. 303-311, Mar. 1998.
9. Xin-Qing Sheng and Shanjia Xu, “Efficient High-Order Mixed Edge Rectangular Element Method for Lossy Anisotropic Dielectric Waveguides,’’ IEEE Trans. Microwave Theory Tech., vol. MTT-45, pp., July 1997.
10. Shanjia Xu and Xin-Qing Sheng, “Coupling of Edge-Element and Mode-Matching for Multi-Step Dielectric Discontinuity in Guiding Structures,” IEEE Trans. Microwave Theory Tech., Vol. 45, pp.284-287, Feb. 1997.
盛新庆代表性著作
《计算电磁学要论》
《电磁波述论》
《目标与环境电磁散射特性建模(基础篇)》
.北京理工大学[引用日期]
企业信用信息On the conflicting roles of ionizing radiation in ceramics的翻译是:在致电离辐射的矛盾的角色在陶瓷PREVENTABLE FACTOR IN COT-DEATH SYNDROME?的翻译是:在COT-DEATH综合症状的可防止的因素?Trophoblastic disease, genomic imprinting and DNA methylation的翻译是:滋养细胞疾病,基因组印和脱氧核糖核酸甲基化High-energy ion-beam-induced modification of the optical properties of polysiloxane films的翻译是:polysiloxane影片光学性能的高能离子射线诱发的修改BaTiO3 film optical-waveguide prepared by pulsed laser deposition的翻译是:BaTiO3 film optical-waveguide prepared by pulsed laser depositionThe effect of thyroxine in vitro on the specific activity of the mitochondrial pool of amino acid的翻译是:Radiation-induced densification of sol–gel SnO2:Sb films的翻译是:溶胶凝胶相互转换的SnO2的幅射线导致的浓缩:Sb影片Preface的翻译是:&div class=&definition& dir=&&&
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Copyright (C) 2005 - . All Rights Reserved.闵长俊_百度百科
闵长俊 性 别: 男 所属部门: 南开大学现代光学研究所 职 称: 副教授
学 历: 博士 研究方向: 微纳光学,表面等离激元光学,光镊,矢量光束
闵长俊简介
闵长俊 性 别: 男 所属部门: 南开大学现代光学研究所 职 称: 副教授
学 历: 博士 研究方向: 微纳光学,表面等离激元光学,光镊,矢量光束
个人简介: 教育经历:
· 1999年9月-2003年6月,中国科学技术大学,物理系光学专业,本科
· 2003年9月-2008年6月,中国科学技术大学,物理系光学专业,博士
研究工作经历:
· 2008年9月-2011年6月,美国路易斯安那州立大学,计算技术中心,博士后研究员
· 2011年8月-2011年12月,新加坡南洋理工大学,电子工程系,Research Fellow
· 2011年12月至今,南开大学,信息技术科学学院,现代光学研究所,副教授
科研项目、成果、获奖、专利等情况: 科研成果:
2003年以来一直从事表面等离激元(SP)亚波长光学相关机理和应用研究,曾在SP光栅透射增强机理、SP高速全光开关和调制器、SP增强效应在光电探测器和新型太阳能电池方面的应用、SP全光动态光镊等诸多方向上做出具有创新意义的科研成果。截至2012年已在Appl.Phys.Lett、Opt.Lett.、Opt.Express、Plasmonics等国际知名期刊上发表SCI论文20余篇,他引200余次。研究成果被《Nature Photonics》、《Virtual Journal for Biomedical Optics》、《激光与光电子学进展》、中科院网站等国内外多家媒体报道。
闵长俊主持项目
1, 国家自然科学基金青年项目 5.12
2, 天津市自然科学基金一般项目 5.9
3, 南开大学科技创新基金, 4.6
4, 教育部博士点基金, 5.12
闵长俊获奖情况
· 2012 中国仪器仪表学会奖学金-金国藩青年学子奖学金
· 2012 入选天津市首批“用三年时间引进千名以上高层次人才”项目
· 2008 中国科学院院长优秀奖
· 2007 中国科学院大恒光学特别奖
撰写论文、专著、教材等: 代表性论文:
[1] Z. Shen, Z. J. Hu, G. H. Yuan, C. J. Min, H. Fang, and X.-C. Yuan, &Visualizing orbital angular momentum of plasmonic vortices&, Opt. Lett. 37,
[2] X. D. Wang, K. Xiao, C. J. Min, Q. Q. Zou, Y. Hua, and X.-C. Yuan, “Theoretical and Experimental Study of Surface Plasmon Radiation Force on Micrometer-sized Spheres,” Plasmonics (Published online DOI 10.-012-9449-y).
[3] L. J. Guo, C. J. Min, G. H. Yuan, C. L. Zhang, J. G. Wang, Z. Shen, and X. -C. Yuan, &Optically stitched arbitrary fan-sectors with selective polarization states for dynamic manipulation of surface plasmon polaritons&, Opt. Express, 20,
[4] Y. Huang, C. Min, and G. Veronis, &Compact slit-based couplers for metal-dielectric-metal plasmonic waveguides&, Opt. Express, 20,
[5] Rui Cao, Yi Hua, Changjun Min, Siwei Zhu, and X.-C. Yuan, &Self-healing optical pillar array&, Opt. Lett., 37,
[6] Y. Huang, C. Min, L. Yang, and G. Veronis, &Nanoscale plasmonic devices based on metal-dielectric-metal stub resonators&, International Journal of Optics,
[7] C. Min, L. Yang, and G. Veronis, &Microcavity enhanced optical absorption in subwavelength slits&, Opt. Express, 19,
[8] Y. Huang, C. Min, and G. Veronis, &Subwavelength slow-light waveguides based on a plasmonic analogue of electromagnetically induced transparency&, Appl. Phys. Lett., 99, 11).
[9] L. Yang, C. Min, and G. Veronis, &Guided subwavelength slow-light mode supported by a plasmonic waveguide system&, Opt. Lett., 35,
[10] C. Min and G. Veronis, &Theoretical investigation of fabrication-related disorders on the properties of subwavelength metal-dielectric-metal plasmonic waveguides&, Opt. Express, 18,
[11] C. Min, J. Li, G. Veronis, J. Y. Lee, S. Fan, and P. Peumans, &Enhancement of optical absorption in thin-film organic solar cells through the excitation of plasmonic modes in metallic gratings&, Appl. Phys. Lett., 96, 10).
[12] T. –W. Lee, S. D. Huver, H. Lee, L. Kaplan, S. B. McCracken, C. Min, D. B. Uskov, C. F. Wildfeuer, G. Veronis, and J. P. Dowling, &Optimization of quantum interferometric metrological sensors in the presence of photon loss&, Phys. Rev. A, 80, 09).
[13] C. Min and G. Veronis, &Absorption switches in metal-dielectric-metal plasmonic waveguides&, Opt. Express, 17,
[14] C. Min, P. Wang, C. Chen, Y. Deng, Y. Lu, H. Ming, T. Ning, Y. Zhou, and G. Yang, &All-optical switching in subwavelength metallic grating structure containing nonlinear optical materials&, Opt. Lett., 33, 869-871 (2008).
[15] C. Min, P. Wang, X. Jiao, Y. Deng, and H. Ming, &Beam focusing by metallic nano-slit array containing nonlinear material&, Appl. Phys. B, 90, 97-99 (2008).
[16] C. Min, P. Wang, X. Jiao, Y. Deng, and H. Ming, &Optical bistability in subwavelength metallic grating coated by nonlinear material&, Opt. Express, 15,
[17] C. Min, P. Wang, X. Jiao, Y. Deng, and H. Ming, &Beam manipulating by metallic nano-optic lens containing nonlinear media&, Opt. Express, 15,
[18] C. Min, X. Jiao, P. Wang, and H. Ming, &Investigation of enhanced and suppressed optical transmission through a cupped surface metallic grating structure&, Opt. Express, 14,
[19] D. Zhang, P. Wang, X. Jiao, C. Min, G. Yuan, Y. Deng, H. Ming, L. Zhang, and W. Liu, &Polarization properties of subwavelength metallic gratings in visible light band&, Appl. Phys. B, 85, 139-143 (2006).
.开大学信息技术科学学院.2011[引用日期]
企业信用信息何建军(浙江大学教授)_百度百科
?浙江大学教授
(浙江大学教授)
本词条缺少名片图,补充相关内容使词条更完整,还能快速升级,赶紧来吧!
1984年毕业于浙江大学光学仪器工程系,分别于1986年和1989年获巴黎第六大学半导体光电子学科硕士和博士学位。
何建军人物简介
1984年毕业于浙江大学光学仪器工程系,分别于1986年和1989年获巴黎第六大学半导体光电子学科硕士和博士学位。1989年赴加拿大新苏格兰技术大学做博士后研究。1994年初加入加拿大国家科学院任研究员,从事半导体光电子集成器件的研究。其间在光子集成器件方面开发的专利技术成为两家高科技公司从加拿大科学院派生的重要基础。2000年作为创始人之一任MetroPhotonics公司的首席科学家。1999年被浙江大学聘为兼职教授,2006年起全职回国工作,受聘教育部长江特聘教授。在集成光电子器件、半导体激光器、半导体量子阱混合技术和非线性光学器件等方面发表了一百九十余篇论文,被SCI论文他引600余次,获得18项美国发明专利,20余项中国发明专利,在国际会议上做特邀报告近20次,曾获得加拿大国家科学院杰出成就奖。IEEE资深会员,2010亚洲光通信和光电子会议(ACP)程序委员会联席主席,2011亚洲光通信和光电子会议(ACP)大会主席。
何建军研究项目
o16×16高速光交换集成芯片和模块,863主题项目
o集成光波导传感器,横向项目
o半导体激光集成生物传感器研究,教育部博士点基金博导类项目
o模拟直调8×6GHz WDM芯片及光载无线传输模块技术, 863项目子课题
o单电极无跳模调谐半导体激光器研制,浙江省自然科学基金重点项目
o基于纳米线的下一代太阳能电池研究, 国家科技部国际合作项目 
o高灵敏度微流集成光波导传感器, 国家自然科学基金项目,
o信息获取光电子集成器件基础研究,国家重点实验室项目,
o光纤到户接入网关键器件的研制 横向项目
o新型波长可控半导体激光器 浙江省科技厅钱江人才项目
o光电子器件 国家基金委杰出青年项目
o用于光纤到户接入网的单纤三向复用器集成光学芯片的研制 浙江省自然科学基金项目 [1]
何建军发表论文
RESEARH HIGHLIGHTS - &16x100GHz Digitally Wavelength Switchable V-Coupled-Cavity Laser with 40dB SMSR&, Jialiang Jin, Lei Wang, Tingting Yu, Yin Wang, and Jian-Jun He, Postdeadline Paper, CLEO-PR, Sydney, Australia, Aug. 27-Sept.1, 2011.- &The Lord of the Rings of optical biosensors&, Jian-Jun He, Lei Jin, and Mingyu Li, SPIE Newsroom, September 2011, DOI: 10..- &Integrated Photonics Research in China&, Andrew W. Poon, Linjie Zhou, Jianping Chen, Yong-Zhen Huang, Jinzhong Yu, Jian-Jun He and Hon K. Tsang, Optics and Photonics News, pp. 23-29, September 2011.- “Compact AWGs eye access applications”, Fiber Systems/Lightwave Europe, R&D News, p. 7, March 2006. REPRESENTATIVE JOURNAL PUBLICATIONS2013- X. Jiang, J. Ye, J. Zou, M. Li, and J.-J. He, “Cascaded silicon-on-insulator double-ring sensors operating in high-sensitivity transverse-magnetic mode”, Optics Letters, 2013.- Jun Zou, Xianxin Jiang, Xiang Xia, Tingting Lang, and Jian-Jun He,&Ultra-Compact Birefringence-Compensated Arrayed Waveguide Grating Triplexer Based on Silicon-on-Insulator&, J. Lightwave Technol., 2013.- Xiao Ma, Mingyu Li and Jian-Jun He. “CMOS-Compatible Integrated Spectrometer Based on Echelle Diffraction Grating and MSM Photodetector Array”, IEEE Photonics Journal, 2013.- Mohammad Kaleem, Xin Zhang, Yuan Zhuang, Jian-Jun He, Neng Liu and Jan J. Dubowski, &UV laser induced selective-area bandgap engineering for fabrication of InGaAsP/InP laser devices&, Optics & Laser Technology Journal, 2013.- Jinyan Song, Sophie Bouchoule, Gilles Patriarche, E. Galopin, Alejandro Giacomotti, E. Cambril, Qingli Kou, D. Troadec, Jian-Jun He, and Jean-Christophe Harmand, “Improvement of the oxidation interface in an AlGaAs/AlxOy waveguide structure by using a GaAs/AlAs superlattice”, Phys. Status Solidi A, (2013) / DOI 10.1002/pssa..- Y. Hu, M. Li, J.-J. He, R.R. LaPierre, &Current matching and efficiency optimization in a two-junction nanowire-on-silicon solar cell&, Nanotechnology 24 ,13).- X. Ma, M. Li and J.-J. He, “Echelle Diffraction Grating Based High-resolution Spectrometer-on-a-chip on SiON Waveguides Platform”, Chinese Opt. Lett. 11(3), 3). 2012
- “Experimental Demonstration of Birefringence Compensation Using Angled Star Couplers in Silica-Based Arrayed Waveguide Grating”, Xiang Xia, Jun Zou, Tingting Lang, and Jian-Jun He, IEEE Photonics Journal, Vol. 4, No. 6, pp.
- &Optical characteristics of GaAs nanowire solar cells&, Y. Hu, R. R. LaPierre, M. Li, K. Chen, and J.-J. He,J. Appl. Phys. 112, 12).
- &Single-Mode and Wavelength Tunable Lasers Based On Deep-Submicron Slots Fabricated By Standard UV-Lithography&, Tingting Yu, Li Zou, Lei Wang, Jian-Jun He, Optics Express 20, pp.
- &Intensity interrogated sensor based on cascaded Fabry-Perot laser and micro-ring resonator&, Jinyan Song, Lei Wang, Lei Jin, Xiang Xia, Qingli Kou, Sophie Bouchoule, and Jian-Jun He, J. Lightwave Technol. 30, pp. , 2012.  - &Digitally Wavelength Switching by Thermal and Carrier Injection Effects in V-Coupled Cavity Semiconductor Laser&, Jialiang Jin, Lei Wang, J.-J. He, Chinese Opt. Lett. 10(10), 2).  - &Narrow Linewidth Single-Mode Slotted Fabry-Perot Laser Using Deep Etched Trenches&, Yin Wang, Lei Wang, Youguang Yang, Sen Zhang and Jian-Jun He, IEEE Photon. Technol. Lett. 24, pp.
- &Wavelength Switchable Semiconductor Laser Based on Half-wave Coupled Fabry-Perot and Rectangular Ring Resonators&, Lin Wu, Yin Wang, Tingting Yu, Lei Wang, and Jian-Jun He, IEEE Photon. Technol. Lett. 24(12), pp. 991-993, 2012.- “Optical Sensor Based on Vernier-Cascade of a Ring Resonator and an Echelle Diffraction Grating”, Li Qin,Lei Wang,Mingyu Li,and Jian-Jun He, IEEE Photon. Technol. Lett. 24(11), pp. 954-956, 2012.- &Fabrication of GaAs Nanowires by Colloidal Lithography and Dry Etching&, Ke Chen, Jian-Jun He, Mingyu Li, and Ray LaPierre, Chinese Physics Letters, Vol. 29, No. 3 , 12.- “Analysis of wavelength and intensity interrogation methods in cascaded double-ring sensors”, L. Jin, M. Li, and J.-J. He, J. Lightwave Technol., vol. 30, no. 12, pp. , 2012.- “Travelling wave analysis on high-speed performance of Q-modulated distributed feedback laser”, J. Zhi, H. Zhu, D. Liu, L. Wang, and J.-J. He, Opt. Express, Vol. 20, No. 3, pp. , 2012.2011 and Earlier - “Widely wavelength switchable V-coupled-cavity semiconductor laser with ~40dB side-mode suppression ratio”,Jialiang Jin, Lei Wang, Tingting Yu, Yin Wang, and Jian-Jun He, Optics Letters 36 (21), pp., 2011.- “Uniform Polarization Dispersion Compensation of All Channels in Highly Birefringent Silicon Nanowire Based Arrayed Waveguide Grating”, Jun Zou, Tingting Lang, Lei Wang, and Jian-Jun He, IEEE Photon. Tech. Lett. 23 ( 23), pp. , 2011.
- &Design Analysis and Experimental Verification of Cross-Order AWG Triplexer Based on Silica-on-Silicon&, Xufeng Lin, Tingting Lang, and Jian-Jun He, IEEE J. Lightwave Technol. 29 (9), pp. , 2011.
- &Optical waveguide double-ring sensor using intensity interrogation with low-cost broadband source&, Lei Jin, Mingyu Li, and Jian-Jun He, Optics Letters, vol. 36, no. 7, pp. , 2011.   - &A multicolor microfluidic droplet dye laser with single mode emission&, G. Aubry, Q. Kou, J. Soto-Velasco, C. Wang, S. Meance, J.-J. He, and A. M. Haghiri-Gosnet, Appl. Phys. Lett. 98, 11.  - &Highly-sensitive silicon-on-insulator sensor based on two cascaded micro-ring resonators with vernier effect&, L. Jin, M. Li, J.-J. He, Optics Communications 284, pp. 156-159, 2011.  - &Void-Filling and Loss Reduction in PECVD Silica Waveguide Devices Using Boron–Germanium Codoped Upper Cladding&, X. Lin, X. Ma, and J.-J. He, IEEE Photon. Tech. Lett. 22 (20), pp. , 2010.  - &Rate Equation Analysis of High Speed Q-Modulated Semiconductor Laser&, D. Liu, L. Wang, and J.-J. He, IEEE J. Lightwave Technol. 28 (21), pp. , 2010.  - &Mode Competition Analysis in Dual-Wavelength Coupled-Cavity Semiconductor Laser&,Zhenyang Gao, Lei Wang and Jian-Jun He, J. of Optical Society of America B, Vol. 27, pp. 432-441, 2010.  - &Static and dynamic characteristics of digital wavelength switching in V-coupled-cavity semiconductor laser&, Dekun Liu, Min Lou, and Jian-Jun He, IEEE J. Lightwave Tech., vol. 28, no. 5, pp. 746-753, 2010.  - &Single-electrode-tuned mode-hop-free tunable laser based on ring coupled cavity&, Lei Wang, and Jian-Jun He, Optics Express Vol. 17, No. 22, pp. , 2009.  - &Bloch Wave Formalism of Photon Lifetime in Distributed Feedback Lasers&, Tingting Yu, Lei Wang and Jian-Jun He, J. of Optical Society of America B, Vol. 26, no. 9, pp. , 2009.  - &Monolithically Integrated FTTH Diplexer Using Bi-level Etched 2x2 Optical Coupler&, Li Zhang, Lei Wang, and Jian-Jun He, Applied Optics, vol. 48, no. 25, pp. F45-48, 2009.  - &Design and Analysis of 2x2 Half-Wave Optical Couplers&, Xufeng Lin, Dekun Liu and Jian-Jun He, Applied Optics, vol. 48, no. 25, pp. F19-24, 2009.  - &Wavelength switchable semiconductor laser using half-wave V-coupled cavities&, J.-J. He and D. Liu, Optics Express, vol. 16, no. 6, pp. , 2008.  - &Birefringence Compensated AWG Demultiplexer with Angled Star Couplers&, T. Lang, J.-J. He, J.-G. Kuang, and S. He, Optics Express, vol. 15, no. 23, 2007.  - &Proposal for Q-modulated semiconductor laser&, J.-J. He, IEEE Photonics Technology Letters, Volume 19, Issue 5, pp. 285 – 287, 2007.  - &Etched Diffraction Grating Demultiplexers With Large Free-Spectral Range and Large Grating Facets&, Song, J.; Zhu, N.; He, J.-J.; He, S., IEEE Photonics Technology Letters, Volume 18, Issue 24, pp.2695 – .  - &Echelle grating demultiplexers with reduced return loss by using chirped diffraction order design&, J. Song, N. Zhu, J.-J. He, S. He, IEEE Photon. Tech. Lett., vol. 18, pp., 2006.  - &Design and Optimization of a Novel InP-based Monolithically Integrated Optical Channel Monitor/Receiver&, L. Wang, J.-J. He, J. Song, and S. He, IEEE Journal of Lightwave Technol. , vol. 24, no. 10, pp. , 2006.  - &Cross-order Arrayed Waveguide Grating Design for Triplexers in Fiber Access Networks&, T. T. Lang, J.J. He and S. He,IEEE Photon. Tech. Lett., vol. 18, no. 1, pp. 232-234, 2006.  - &A hybrid diffraction method for the design of an etched diffraction grating demultiplexer&, Z. Shi, J.-J. He, and S. He, IEEE J. Lightwave Tech., vol. 23, pp. , 2005.  - &Polarization performance analysis of etched diffraction grating demultiplexer using boundary element method&, Jun Song, J.-J. He, S. He, IEEE Journal of Selected Topics in Quantum Electronics, Vol. 11, No. 1, pp. 224 – 231, 2005.  - &Waveguide Echelle Grating with Low Polarization-Dependent Loss Using Single-Side Metal-Coated Grooves&, Z. Shi, J.-J. He, and S. He, IEEE Photon. Tech. Lett.16, pp. , 2004.  - &Waveguide grating-based spectrometric transducers&, E. S. Koteles and J.-J. He, IEEE Instrumentation & Measurement Magazine, Vol. 7, No. 2, pp. 33-42, June 2004.  - &Analysis and design of a concave diffraction grating with total internal reflection facets by a hybrid diffraction method&, Z. Shi, J.-J. He, and S. He, J. Opt. Soc. Am. A., vol. 21, no. 7, pp. , 2004.  - &An analytic method for designing passband flattened DWDM demultiplexers using spatial phase modulation&, Z. Shi, J.-J. He, and S. He, IEEE J. Lightwave Tech. 21, pp. , October 2003.  - &Phase-dithered waveguide grating with flat passband and sharp transitions&, J.-J. He, IEEE J. Selected Topics Quantum Electron., Vol. 8, No. 6, Special issue on Arrayed Grating Routers and Integrated Optics, pp. , 2002.  - &Polarization dispersion compensated AWG demultiplexer fabricated in a single shallow etching step&, J.-J. He, B. Lamontagne, and E. S. Koteles, Electron. Lett. 35, pp. 737-738, 1999.  - &Integrated polarization compensator for WDM waveguide demultiplexers&, J.-J. He, E. S. Koteles, B. Lamontagne, L. Erickson, A. Delage, and M. Davies, IEEE Photon. Tech. Lett. 11 (2), pp. 224-226, 1999.  - &Monolithic integrated wavelength demultiplexer based on a waveguide Rowland circle grating in InGaAsP/InP&, J.-J. He, B. Lamontagne, A. Delage, L. Erickson, M. Davies, E. S. Koteles, J. Lightwave Tech. 16, pp. 631-638, 1998.  - &Polarization insensitive InGaAs/InGaAsP/InP amplifiers using quantum well intermixing&, J.-J. He, S. Charbonneau, P. J. Poole, G. C. Aers, Y. Feng, E. S. Koteles, R. D. Goldberg and I. V. Mitchell, Appl. Phys. Lett. 69, pp. 562-564, 1996.  - &Bandgap shifted InGaAsP/InP quantum well waveguides using MeV ion implantation&, J.-J. He, E. S. Koteles, P. J. Poole, M. Davis, R. Goldberg, I. Mitchell, and S. Charbonneau, Electron. Lett. 31, pp.
(1995). -&Quantum-well intermixing for optoelectronic integration using high energy ion implantation&, S. Charbonneau, P. J. Poole, P. G. Piva, G. C. Aers, E. S. Koteles, M. Fallahi, J.- J. He, J. P. McCaffrey, M. Buchanan, M. Dion, R. D. Goldberg, and I. V. Mitchell, J. Appl. Phys. 78, pp.
(1995). - &Low-threshold optical bistable switching in an asymmetric l/4-shifted distributed-feedback heterostructure&, S. Janz, J. He, Z. R. Wasilewski, and M. Cada, Appl. Phys. Lett. 67, ). - &Optical nonlinear devices&, M. Cada, J. He, R. Normandin, H. Dai, and S. Janz, invited paper, International Journal of Nonlinear Optical Physics, Vol. 3, pp. 169-203 (1994). - &Phase-matched combined distributed-feedback/Fabry-Perot structure for semiconductor lasers&, J. He and M. Cada, Optics Commun. 110, pp. 115-119 (1994). - &Transparent optical signal regeneration using a nonlinear bistable device&, M. Cada, J. He, C. Rolland, and A. J. SpringThorpe, Electronics Lett. 29, ). - &All-optical bistable switching and signal regeneration in a semiconductor layered distributed-feedback/Fabry-Perot structure&, J. He, M. Cada, M.-A. Dupertuis, D. Martin, F. Morier-Genoud, C. Rolland, and A. J. SpringThorpe, Appl. Phys. Lett. 63, 867 (1993). - &Bistable switching in a nonlinear Bragg reflector&, B. Acklin, M. Cada, J. He, and M.-A. Dupertuis, Appl. Phys. Lett. 63, ). - &Combined distributed feedback and Fabry-Perot structures with a phase-matching layer for optical bistable devices&, J. He and M. Cada, Appl. Phys. Lett. 61, ). - &All-optical reflectivity tuning and logic gating in a GaAs/AlAs periodic layered structure&, M. Cada,J. He, B. Acklin, M. Proctor, D. Martin, F. Morier-Genoud, M.-A. Dupertuis, and J. M. Glinski, Appl. Phys. Lett. 60, 404 (1992). - &Optical bistability in semiconductor periodic structures&, J. He and M. Cada, IEEE J. Quantum Electron. QE-27, ). - &Resonant acousto-optical interaction in superlattices&, J. He, and J. Sapriel, Appl. Phys. Lett. 55, ). - &Acoustic attenuation and optical absorption effects on the light scattering by acoustic phonons in superlattices&, J. He, J. Sapriel, and R. Azoulay, Phys. Rev. B40, ). - &Semiconductor photoelastic constants measured by light scattering in superlattices&, J. He, J. Sapriel and H. Brugger, Phys. Rev. B39, ). - &Coupled Brillouin-Raman study of direct and folded acoustic modes in GaAs-AlAs superlattices&, J. Sapriel, J. He, B. Djafari-Rouhani, R. Azoulay and F. Mollot, Phys. Rev. B37, ). - &Theory of light scattering by longitudinal-acoustic phonons in superlattices&, J. He, B. Djafari-Rouhani and J. Sapriel, Phys. Rev. B37, ).
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