يعرض 1 - 20 نتائج من 29 نتيجة بحث عن '"耦合效率"', وقت الاستعلام: 0.43s تنقيح النتائج
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    Conference

    المؤلفون: 曹莉华, 余玮, 郁明阳

    المساهمون: 北京应用物理与计算数学研究所, 北京大学应用物理与技术研究中心, 中国科学院上海光学精密机械研究所, 浙江大学

    المصدر: 知网

    Relation: 第十三届全国物理力学学术会议.; 826050; http://hdl.handle.net/20.500.11897/223685

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    Report

    Relation: 北京理工大学学报; Liu, Guang; Wang, Hong-Jian; Zhang, Sheng-Wei; Cheng, Yue-Yun; Yi, Min; Chen, Xue; Liu, Shi-Hua.曲线轮廓光壁喇叭天线设计与分析,Beijing Ligong Daxue Xuebao/Transaction of Beijing Institute of Technology,2011,31(1):87-91; http://ir.nssc.ac.cn/handle/122/3450

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    Dissertation/ Thesis
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    Dissertation/ Thesis
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    المؤلفون: 游舒凱, You, Shu-Kai

    المساهمون: 淡江大學機械與機電工程學系碩士班, 吳乾埼, Wu, Chyan-Chyi

    Relation: [1] Cheng-Chih Hsu a, Chyan-Chyi Wua, Ju-Yi Lee b, Hui-Yi Chen b, Han-Fu Weng a, "Reflection type heterodyne grating interferometry for in-plane displacement measurement," 2008. [2] C.-C. W. Chih-Kung Lee, Shih-Jui Chen, Liang-Bin Yu, You-Chia Chang, and J.-Y. C. Yeong-Feng Wang, and Jeremy Wen-Jong Wu, "Design and construction of linear laser encoders that possess high tolerance of mechanical runout," 2004. [3] C.-C. Wu1, et al., "Optical heterodyne laser encoder with sub-nanometer resolution," 2008. [4] C. wei-tai, "The study of Fiber Bragg Grating Based Meso-scale Three-dimensional Measurement " 2012. [5] Ching-Liang Daia, Pin-Hsu Kaoa, Yao-Wei Taia, Chyan-Chyi Wub, "Micro FET pressure sensor manufactured using CMOS-MEMS technique," 2008. [6] C. C. Wu, Hsu,C.C, "In-plane Subnanometer Displacement Measurement for Precision Manufacture Platform," 2007. [7] C.-C. W. Chih-Kung Lee, Shih-Jui Chen, Liang-Bin Yu, You-Chia Chang, and J.-Y. C. Yeong-Feng Wang, and Jeremy Wen-Jong Wu, "Design and construction of linear laser encoders that possess high tolerance of mechanical runout," 2004. [8] C.-C. H. Chyan-ChyiWu1, Ju-Yi Lee2, Hui-Yu Chen3 and and C.-L. Dai4, "Optical heterodyne laser encoder with sub-nanometer resolution," 2008. [9] C. L. Dai, Peng,H.J.,Liu,M.C, "a micromachined microwave switch fabricated by the complementary metal oxide semiconductor post-process of etching silicon dioxide," 2005. [10] A. n. W. h. s. i. w. m.-h. a. i. a. c. o. c. m. u. C.-M. technique, 2007. [11] 謝旻甫, "預判式尋光對位方法," 2004. [12] 謝旻甫, "預判式尋光對位," 2004. [13] 陳伯睿, "光纖自動對準組裝技術研發," 2001. [14] 賴慶隆, "矽基平面式梯度折射率微透鏡於單模光纖收發器之研究," 2005. [15] c. wei-tai, "The study of Fiber Bragg Grating Based Meso-scale Three-dimensional Measurement," Master’s Program in Mechanical and Electro-Mechanical Engineering, Tamkang University, 2012. [16] "進階物理全反射." [17] "光纖的處理與數值孔徑之量測." [18] 吳乾埼, "微型三次元量測儀探針技術研究," FY93 工業技術研究院前瞻科專計畫書, 2004. [19] 周甘霖, "TO-CAN 封裝雷射銲接機的尋光對位法則之研究," 國立成功大學, 2005. [20] F. F. Yoshiyuki Ichioka, Shigenobu Shinohara and H. Y. Hiroaki Ikeda, and Masao Sumi, "Search of a Moving Object and Its Range-Image Measurement Using Range-Finding Speedometer," Shizuoka University, 1996. [21] 呂昱寬, "波前量測應用於雷射與光纖耦合之研究," 2008. [22] 呂漢威、劉佳宜、陳寳全、柯宙芳、光灼華, "橢圓錐狀光纖透鏡參數對耦光效率之分析," 2007. [23] F. Glover., and Laguna,M, "Tabu search," Kluwer Academic Publishers, 1997. [24] F. Glover., "Tabu Search Part II “ORSA Journal on Computing Vol. 2 No 1 pp 4-32," Kluwer Academic Publishers, 1990. [25] F. Glover., "Tabu Search Part I “ORSA Journal on Computing Vol. 1 No 3 pp 190-206," Kluwer Academic Publishers, 1989. [26] J. S. G. Francisco Javier Ovalle Martinez, DQG ,YDQ 6WRMPHQRYLu, "A Parallel Hill Climbing Algorithm for Pushing Dependent Data in Clients-Providers-Servers Systems," UNAM, 2002. [27] 牟. 陳志隆, "光纖切割與餵光," 2001. [28] 高. 姚志賢, "光纖透鏡準直特性之研究," 2006. [29] 邱. 邓华秋, "光纖端面汙染清潔," 2008. [30] M. A. Karen Martin, Sarah McLaughlin, "The Imaging Facility Newsletter," 2012. [31] G. Palmer, "Diffraction grating handbook 5th edition," 2002.; U0002-2708201313543300; http://tkuir.lib.tku.edu.tw:8080/dspace/handle/987654321/94485; http://tkuir.lib.tku.edu.tw:8080/dspace/bitstream/987654321/94485/-1/index.html

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    المؤلفون: 官有倫, You-Lun Guan

    المساهمون: 嚴大任, Ta-Jen Yen

    Time: 27

    وصف الملف: 155 bytes; text/html

    Relation: (1) Raether, H., Ed. Surface plasmons on smooth and rough surfaces and on gratings; Springer-Verlag: Berlin, 1988. (2) Sun, Y.; Liu, X.; Song, D.; Tian, Y.; Bi, S.; Zhang, H. Sensors and Actuators B: Chemical 2007, 122, 469-474. (3) Sigal, G. B.; Bamdad, C.; Barberis, A.; Strominger, J.; Whitesides, G. M. Anal. Chem. 1996, 68, 490-497. (4) Lyon, L. A.; Musick, M. D.; Natan, M. J. Anal. Chem. 1998, 70, 5177-5183. (5) Starodub, M. F.; Starodub, V. M. Ukr Biokhim Zh 2000, 72, 147-163. (6) Chou, S.-F.; Hsu, W.-L.; Hwang, J.-M.; Chen, C.-Y. Biosensors and Bioelectronics 2004, 19, 999-1005. (7) Shankaran, D. R.; Gobi, K. V.; Miura, N. Sensors and Actuators B: Chemical 2007, 121, 158-177. (8) Campagnolo, C.; Meyers, K. J.; Ryan, T.; Atkinson, R. C.; Chen, Y.-T.; Scanlan, M. J.; Ritter, G.; Old, L. J.; Batt, C. A. Journal of Biochemical and Biophysical Methods 2004, 61, 283-298. (9) Homola, J.; Yee, S. S.; Gauglitz, G. Sensors and Actuators B: Chemical 1999, 54, 3-15. (10) Wood, R. W. Phil. Magm. 1902, 4, 396-402. (11) Ritchie, R. H. Phys. Rev. 1957, 106, 874. (12) Powell, C. J.; Swan, J. B. Phys. Rev. 1960, 118, 640. (13) kretschmann, E.; Raether, H. Z. Naturforsch 1968, 23a, 2135. (14) Otto, A. Z. Physik 1968, 216, 398-410. (15) Owen, V. Biosensors and Bioelectronics 1997, 12, i-ii. (16) Borchers, T.; Spener, F.; Specht, B.; Kruchinin, A. A.; Vlasov, Y. G. International Conference on SoliOCState Sensors and Actuator 1997, 1, 493-494. (17) Otto, A. Zeitschrift fur Physik 1968, 216, 398-410. (18) Kretschmann, E. Z. Physik 1971, 241, 313-324. (19) Liedberg, B.; Nylander, C.; Lundstrom, I. Biosensors and Bioelectronics 1995, 10, i-ix. (20) Ronot-Trioli, C.; Trouillet, A.; Veillas, C.; Gagnaire, H. Sensors and Actuators A: Physical 1996, 54, 589-593. (21) Rich, R. L.; Myszka, D. G. Journal of molecular recognition 2005, 19, 478-534. (22) Chinowsky, T. M.; Quinn, J. G.; Bartholomew, D. U.; Kaiser, R.; Elkind, J. L. Sensors and Actuators B: Chemical 2003, 91, 266-274. (23) Collett, E. Polarized light : fundamentals and applications; New York :Marcel Dekker, 1993. (24) 吳耀民; 劉威志 物理雙月刊 2006, 28, 486-496. (25) 邱國斌; 蔡定平 物理雙月刊 2006, 28, 472-485. (26) Ulman, A. An introduction to ultrathin organic films : from Langmuir-Blodgett to self-assembly; Boston :Academic Press, 1991. (27) Ulman, A. Chem. Rev. 1996, 96, 1533-1554. (28) XU, J.; LI, H.-L. JOURNAL OF COLLOID AND INTERFACE SCIENCE 1995, 176, 138-149. (29) Nuzzo, R. G.; L., A. D. J. Am. Chem. Soc. 1983, 105, 4481. (30) Colin D. Bain, E. B. T., Yu Tai Tao, Joseph Evall, George M. Whitesides, Ralph G. Nuzzo J. Am. Chem. Soc. 1989, 111, 321-335. (31) Wink, T.; Zuilen, S. J. v.; Bult, A.; Bennekom, W. P. v. Analyst 1997, 122, 43R-50R. (32) Schreiber, F. JOURNAL OF PHYSICS: CONDENSED MATTER 2004. (33) Black, F. E.; Hartshorne, M.; Davies, M. C.; Roberts, C. J.; Tendler, S. J. B.; Williams, P. M.; Shakesheff, K. M.; Cannizzaro, S. M.; Kim, I.; Langer, R. Langmuir 1999, 15, 3157-3161. (34) Livaniou, E.; Costopoulou, D.; Vassiliadou, I.; Leondiadis, L.; Nyalala, J. O.; Ithakissios, D. S.; Evangelatos, G. P. Journal of Chromatography A 2000, 881, 331-343. (35) Leenheer, A. P. D.; Lambert, W. E.; Bocxlaer, J. F. V. Modern chromatographic analysis of vitamins; New York : Marcel Dekker, 2000. (36) Weber, P. C.; Ohlendorf, D. H.; Wendoloski, J. J.; Salemme, F. R. Science 1989, 243, 85-88. (37) Caide, X.; Sui, S.-F. Sensors and Actuators B: Chemical 2000, 66, 174-177. (38) Roy, D. Optics Communications 2001, 200, 119-130. (39) Xinglong, Y.; Dingxin, W.; Zibo, Y. Sensors and Actuators B: Chemical 2003, 91, 285-290. (40) Hansen, W. N. J. Opt. Soc. Am. 1968, 58, 380. (41) Ong, B. H.; Yuan, X.; Tjin, S. C.; Zhang, J.; Ng, H. M. Sensors and Actuators B: Chemical 2006, 114, 1028-1034. (42) Li, X.; Tamada, K.; Baba, A.; Knoll, W.; Hara, M. J. Phys. Chem. B 2006, 110, 15755-15762. (43) Ya-Ling Chiang, H.-F. C. unpublished 2006. (44) Ekgasit, S.; Thammacharoen, C.; Knoll, W. Anal. Chem. 2004, 76, 561-568. (45) T. E. Batchman, K. A. M. IEEE Journal of Quantum Electronics 1977, QE-13, 187. (46) Roy, D. Applied Spectroscopy 2001, 55, 1046-1052. (47) M. A. Ordal, L. L. L., R. J. Bell, S. E. Bell, R. R. Bell, R. W. Alexander, Jr., and C. A. Ward Applied Optics 1983, 22, 1099. (48) Bosenberg, J. Physics Letters 1971, 37A, 439-440. (49) Rothenhausler, B.; Rabe, J.; Korpiun, P.; Knoll, W. Surface Science 1982, 137, 373-383. (50) Inagaki, T.; Kagami, K.; E.T.Arakawa Applied Optics 1982, 21, 949-954. (51) Homola, J.; Koudela, I.; Yee, S. S. Sensors and Actuators B: Chemical 1999, 54, 16-24. (52) Pavia, D. L.; Lampman, G. M.; Kriz, G. S. Introduction to Spectroscopy; Thomson, 2000. (53) Schuck, P.; Boyd, L. F.; Andersen, P. S., 1999, pp 20.22.21-20.22.22. (54) Schuck, P. Annu. Rev. Biophys. Biomol. Struct. 1997, 26, 541-566. (55) Lee, H. J.; Nedelkov, D.; Corn, R. M. Anal. Chem. 2006, 78, 6504-6510. (56) Ho, H. P.; Wu, S. Y.; Yang, M.; Cheung, A. C. Sensors and Actuators B: Chemical 2001, 80, 89-94. (57) Adam, P.; Dostalek, J.; Homola, J. Sensors and Actuators B: Chemical 2006, 113, 774-781. (58) Kyung Hun Yoon, M. L. S., and Sung June Kim Optics Express 2006, 14, 4842-4849.; http://nthur.lib.nthu.edu.tw/dspace/handle/987654321/31013

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    المؤلفون: 周木楠, Mu-Nan Chou

    المساهمون: 王立康, Li-Karn Wang

    Time: 49

    وصف الملف: 155 bytes; text/html

    Relation: [1]Richard Syms ,John Cozens,”Optical guided wave and devices,” Department of electrical and electronic engineering imperial college of science,Technology and medicine [2]Lucas B. Soldano and Erik C. M. pennings,Member,IEEE”optical Multi-mode interf- erence devices based on self-imaging:principles and applications,”1995 IEEE [3]鮑則源,”在矽晶圓上沉積二氧化矽之一分八分光器的模擬設計與製作,” 國立清華大學光電所碩士論文,2005,指導老師 王立康教授 [4] R.Ulrich and G. Ankele,“Self-imaging in homogeneous planar optical waveguides,” 1975 American Institute of Physics [5]Howard J Baker,Jason R Lee ,Denis R Hall,”Self-imaging and high-beam-quality operation in multi-mode planar waveguide optical amplifiers,” [6]M. Olivero and M.Svalgaard,”Fabrication of 2×8 power splitters in silica-on-silicon by the direct uv writing technique,” IEEE,2006 [7] 施耀輝,“脊狀波導分光器之研究與改良,” 國立清華大學電機所碩士論文, 2003, 指導老師 王立康教授 [8]黃伯欽, “多模干涉波導1×4 MMI 設計與製程,” 國立清華大學電機所碩士論文, 2004, 指導老師 王立康教授 [9]許緒寬, “脊狀結構之波導元件的模擬與製作” 國立清華大學電機所碩士論文, 2004, 指導老師 王立康教授 [10]David K. Cheng , “Field and Wave Electromagnetics 2/e,” Addison Wesley Longman出版 [11]D. Marcuse, Light Transmission Optics. New York: Van Nostrand Reinhold, 1972. [12]N. S. Kapany and J. J. Burke, Optical Waveguide. New York:Academic, 1972. [13]Francois Ladouceur and Pierre Labeye,“A New General Approach to Optical Waveguide Path Design,” IEEE Journal of Lightwave technology, Vol. 13, No.3, PP.481~PP492, 1995 [14]Meint K. Smit, Erik C. K. Pennings, Hans Blok, “A Normalized Approach to the Design of Low-Loss Optical Waveguide Bends,” IEEE Journal of Lightwave technology, Vol. 11, No.11, PP.1737~PP1742, 1993 [15]L. H. Splekman, Y. S. Oei, E. G. Metaal, F. H. Groen, P. Demeester, M. K. Smit, [16]Dagli, N.; Fonstad, C., “Analysis of rib dielectric waveguide,” IEEE Journal of Quantum Electronic, Vol. 21, No.4, 1985. [17] Han-Bin Lin,wei-Lin Chen,Pei-Kuen Wei,Student Member,IEEE,“A novel couple-type power divider with large-angle low-loss characteristics,”IEEE Journal of quantum electronics,1995 [18] Ruei-chang Lu,Yu-Pin Liao,“Design of symmetric Y-branch with a substrate prism and two tapered output waveguides on LiNbO3,”IEEE photonics technology letters,1998; http://nthur.lib.nthu.edu.tw/dspace/handle/987654321/35741

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    Academic Journal

    المؤلفون: 邵凯, 崔广霁, 孟小凡

    المساهمون: 南京固体器件研究所, 北京大学物理系

    المصدر: 知网

    Relation: 低温物理.1983,(04),292-298.; 754107; http://hdl.handle.net/20.500.11897/387744