/ / ~ / / ~ ( ) Plasmonics 2. Nanophotonics 3. Solar cell 4. Optical engineeri
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1 / / ~ //206.02~ ( ) Plasmonics 2. Nanophotonics. Solar cell 4. Optical engineering Chih-Ming Wang ~ ~ * SCI EI SSCI A&HCI A (A) [Journal Paper] [] Wei-Yi Tsai, Chih-Ming Wang*, Ching-Fu Chen, Pin Chieh Wu, Yi-Hao Chen, Ting-Yu Chen, Pei Ru Wu, Jia-Wern Chen, and Din Ping Tsai*, Material-assisted metamaterial: a new dimension to create functional metamaterial, Sci. Rep. 7, (207) [2] Chun Yen Liao, Chih-Ming Wang*, Bo Han Cheng, Yi-Hao Chen, Wei-Yi Tsai, De-Yu Feng, Ting-Tso Yeh, Ta-Jen Yen, and Din Ping Tsai*, Quasi-coherent thermal radiation with multiple resonant plasmonic cavities, Appl. Phys. Lett. 09, 260 (206) [] Chih-Ming Wang*, and Din Ping Tsai, Lambertian thermal emitter based on plasmonic enhanced absorption, Opt. Express, 24(6): (206) [4] You Zhe Ho, Bo Han Cheng, Wei-Lun Hsu, Chih-Ming Wang, and Din Ping Tsai*, Anomalous reflection from metasurfaces with gradient phase distribution below 2π, Applied Physics Express 9, (206) [5] Meng-Chien Lee, Chun-Yu Wang, Che-Chin Chen, Chih-Ming Wang*, Ta-Chih Hsiao, and Din Ping Tsai, Visible light active photocatalyst from Recycle disposable heating pads,, J. Nanophotonics, 0 (), , (206) [6] Qian Wang, Edward T. F. Rogers, Behrad Gholipour, Chih-Ming Wang, Guanghui Yuan, Jinghua Teng, and Nikolay I. Zheludev*, Optically Reconfigurable Photonic Devices Nat. Photon. 0, (206) [7] Liang-Chun Chen, Chun-Tien Yu, Yu-Chang Peng, Jing-Jie Hung, Hung-Ming Chang, Shien-Der Tzeng, Chih-Ming Wang, Chun-Chieh Lin, and Chu-Hsuan Lin*, Antireflection with graphene oxide, Opt. Mater. Express, Vol. 6, No., pp. 8-8, Jan. 206 (SCI, EI, 204 Impact Factor: 2.844, Ranking: 4/87 = 6. % in OPTICS)
2 [8] Yao-Wei Huang, Wei Ting Chen, Wei-Yi Tsai, Pin Chieh Wu, Chih-Ming Wang, Greg Sun, and Din Ping Tsai*, Aluminum plasmonic multi-color meta-hologram, Nano Lett. 5 (5), pp (205) (SCI, EI, 204 Impact Factor:.592, Ranking: 9 / 259 =.5% in Materials Science, Multidisciplinary) [9] Sheng-Han Tu, Da-Ge Ruan, Shien-Der Tzeng, I-Chi Ni, and Chih-Ming Wang*, Optical properties of InGaN/GaN MQWs LED with D Au nanoparticle grating, J. Nanophotonics 8 (), (204) (SCI, EI, 204 Impact Factor:.686, Ranking: 7 / 86 = 4% in Optics) [0] C. M. Wang*, C. Y. Wang, Photocorrosion of plasmonic enhanced CuxO photocatalyst, J. Nanophotonics 8 (), (204) (SCI, EI, 204 Impact Factor:.686, Ranking: 7 / 86 = 4% in Optics) [] Yu-Jen Chen, Meng-Chang Lee and Chih-Ming Wang*, Dielectric function dependence on temperature for Au and Ag, Jpn. J. Appl. Phys. 5, 08MG02 (204) (SCI, EI, 204 Impact Factor:.067, Ranking: 8/27 = 6.8% in PHYSICS) [2] Sheng-Fu Lin, Fu-Chen Chang, Zhi-Heng Chen, Chih-Ming Wang, Tsung-Hsun Yang, Wen-Yih Chen, and Jenq-Yang Chang*, A polarization control system for intensity-resolved guided mode resonance sensors, Sensors 4 (), (204) [] Wei Ting Chen, Kuang-Yu Yang, Chih-Ming Wang*, Yao-Wei Huang, Greg Sun, I-Da Chiang, Chun Yen Liao, Wei-Lun Hsu, Hao Tsun Lin, Shulin Sun, Lei Zhou, Ai Qun Liu, Din Ping Tsai*, High-efficiency broadband meta-hologram with polarization-controlled dual images, Nano Lett., 204, 4 (), pp ( These authors contributed equally to this work.) (IF: =.98 Rank: 7/22 =% in MATERIALS SCIENCE, MULTIDISCIPLINARY) [4] Chih-Ming Wang,*and De-Yu Feng, Omnidirectional thermal emitter based on plasmonic nanoantenna arrays, Opt. Express. 22(2), p.-8 (204) (SCI, EI, 204 Impact Factor:.488, Ranking: 9 / 86 = 0.5% in Optics) [5] Chun-You Wei, Chu-Hsuan Lin*, Hao-Tse Hsiao, Po-Chuan Yang, Chih-Ming Wang, Yen-Chih Pan, Efficiency Improvement of HIT Solar Cells on p-type Si Wafers Materials, 6(), p (20) (SCI, 204 Impact Factor: 2.65, Ranking: 54/259 = 20.8 % in MATERIALS SCIENCE, MULTIDISCIPLINARY) [6] Wen-Ting Kung, Yi-Hao Pai, Yu-Kuei Hsu, Chu-Hsuan Lin and Chih-Ming Wang*, Surface Plasmon assisted Cu x O photocatalyst for pure water splitting, Opt. Express. 2(S2), pp. A22-A228 (20) (SCI, EI, 204 Impact Factor:.488, Ranking: 9 / 86 = 0.5% in Optics) [7] Sheng Fu Lin, Chih Ming Wang, Ya Lun Tsai, Ting Jou Ding, Tsung Hsun Yang, Wen Yih Chen, and Jenq Yang Chang*, A model for fast predicting and optimizing the sensitivity of surface-relief guided mode resonance sensors, Sensors & Actuators: B. Chemical 76, P97-20 (20) [8] C.H. Lin*, T. H. Tsai, C.M. Wang, W. T. Yeh Photodetectors with an HIT structure on p-type crystalline Si wafers, Appl. Surf. Science, 275, (20) (SCI, EI, 204 Impact Factor: 2.7, Ranking: 2/6 = 2.5% in MATERIALS SCIENCE, COATINGS & FILMS) [9] Shulin Sun, Kuang-Yu Yang, Chih-Ming Wang, Ta-Ko Juan, Wei Ting Chen, Chun-Yen Liao, Guang-Yu Guo, Lei Zhou and Din Ping Tsai, High-efficiency Broadband Anomalous Reflection by Gradient Meta-surfaces, Nano Lett., 2, p (202) (co-first author) (IF: =.98 Rank: 7/22 =% in MATERIALS SCIENCE, MULTIDISCIPLINARY) ( These authors contributed equally to this work.) [20] Chih-Ming Wang*, and Din Ping Tsai, Plasmonic Infrared Band-stop Reflective Filter IEEE Journal of Selected Topics in Quantum Electronics, 9(), p (20) (invited paper) (IF:.78 Rank: /245=4% in ENGINEERING, ELECTRICAL & ELECTRONIC) 2
3 [2] Chih-Ming Wang* and Chih-Jui Yu, " Free space Plasmonic filter with Dual resonance wavelength using asymmetric T-shaped metallic array," Plasmonics, 8(2), Issue 2, pp (20) (June) (SCI, EI, 204 Impact Factor: 2.28, Ranking: 7 / 259 = 27.4% in Materials Science, Multidisciplinary) [22] Chih-Ming Wang*, Sheng-Han Tu, Ta-Ko Juan, Sheng-Fu Lin and Jenq-Yang Chang "Polarization dependent light extraction of a GaN light emitting diode using dark field angle-resolved photoluminescence spectrometry," Opt. Express 20(6), p (202) [2] Sheng-Fu Lin, Chih-Ming Wang, Ting-Jou Ding, Ya-Lun Tsai, Tsung-Hsun Yang, Wen-Yih Chen, and Jenq-Yang Chang*, " Sensitive metal layer assisted guided mode resonance biosensor with a spectrum inversed response and strong asymmetric resonance field distribution," Opt. Express, 20(), p (202) (SCI, EI, 204 Impact Factor:.488, Ranking: 9 / 86 = 0.5% in Optics) [24] Chih-Jui Yu, Yi-Ping Liang, Hwen-Fen Hong and Chih-Ming Wang*, Transmissive color filtering using plasmonic multilayer structure, Opt. Eng. 5(4), (202) [25] Jui Wen Pan*, Jiun-Yang Huang, Chih-Ming Wang, Hwen-Fen Hong, Yi-Ping Liang, High concentration and homogenized Fresnel lens without secondary optics element, Opt. Commun. 284, p (20) (IF=.552; Ranking: 2/64 = % in Optics,) [26] Cheng-Wen Cheng, Mohammed Nadhim Abbas, Zi-Chang Chang, M. H. Shih,* C. M. Wang, M. C. Wu, and Yia-Chung Chang, Angle-independent plasmonic infrared band-stop reflective filter based on the Ag/SiO 2 /Ag T-shaped array, Opt. Lett. 6(8), pp (20) (IF:.059; Ranking: 6/7 = 9% in Optics,) [27] C. M. Wang*, Y. L. Tsai, S. H. Tu, C. C. Lee, C. H. Kuo, and J. Y. Chang, Optical properties of light emitting diodes with a cascading plasmonic grating, Opt. Express, 8, pp (200) (IF:.278; Ranking: /7 = 5% in Optics,) [28] Y. L. Tsai, J. Y. Chang*, M. L. Wu, Z. R. Tu, C. C. Lee, C. M. Wang and C. L. Hsu, Enhancing the resonance quality factor in membrane-type resonant grating-waveguide, Opt. Lett. 5 (24), pp (200) [29] J. Wen Pan*, S. H. Tu, W. S. Sun, C. M. Wang, and J. Y. Chang, Integration of Non-Lambertian LED and Reflective Optical Element as Efficient Street Lamp, Opt. Express., 8, p. A22-A20 (200)(IF:.88; Ranking: /64 = 5% in Optics,) [0] C. M. Wang, H. I Huang, J. W. Pan, H. Z. Kuo, H. F. Hong, H. Y. Shin and J. Y. Chang*, Single stage transmission type broadband solar concentrator, Opt. Express., 8, p.a8-a25 (IF:.88; Ranking: /64 = 5% in Optics,)(200) [] S. H. Tu, S. Y. Wu, Y. C. Lee, J. W. Pan, C. H. Kuo, C. M. Wang and J. Y. Chang, Functional imprinting structures on GaN-based light emitting diodes for light pattern modulation and light extraction efficiency enhancement, Opt. Rev. 7(4), p (200) (IF=0.545; Ranking: 5/64 = 80% in Optics) [2] C. C. Chao, C. M. Wang * and J. Y. Chang, Spatial distribution of absorption in plasmonic thin film solar cells, Opt. Express., 8, p (200)(IF:.88; Ranking: /64 = 5% in Optics,) [] C. C. Chao, S. H. Tu, C. M. Wang*, H. I Huang, C. C, Chen and J. Y. Chang, Impedance-matching surface plasmon absorber for FDTD siumulation, Plasmonics, 5, p (200) (IF=.488; Ranking: 22/90 = 2% in Materials science, multidisciplinary) [4] M. R. Shcherbakov, P. P. Vabishchevich, M. I. Dobynde, T. V. Dolgova, A. S. Sigov, C. M. Wang, D. P. Tsai, and A. A. Fedyanin, Plasmonic Enhancement of Linear Birefringence and Linear Dichroism in Anisotropic Optical Metamaterials, JETP Letters, 90(6), pp (2009) (IF=.48; Ranking: 26/64 = 4% in Physics, Multidisciplinary) [5] H. C. Lan, H. L. Hsiao, C. C. Chang, C. H. Hsu, C. M. Wang, and M. L. Wu*, Monolithic integration of elliptic-symmetry diffractive optical element on silicon-based 45 micro-reflector, Opt. Express., 7(2), p (2009) (IF:.88; Ranking:
4 /64 = 5% in Optics,) [6] C. M. Wang*, Y. C. Chang and D. P. Tsai, Spatial filtering by using cascading plasmonic grating, Opt. Express., 7(8), p (2009) (IF:.88; Ranking: /64 = 5% in Optics,) [7] C. C. Chao, C. M. Wang, Y. C. Chang, and J. Y. Chang*, Plasmonic Multilayer Structure for Ultrathin Amorphous Silicon Film Photovoltaic Cell, Opt. Rev. 6(), p (2009) (IF=0.545; Ranking: 5/64 = 80% in Optics) [8] S. H. Tu, J. W. Pan, C. M. Wang, Y. C. Lee, and J. Y. Chang*, New Collection Systems for Multi LED Light Engines, Opt. Rev. 6() p (2009) (IF=0.545; Ranking: 5/64 = 80% in Optics) [9] C. M. Wang, Y. C. Chang*, M. N. Abbas, M. H. Shih and D. P. Tsai, T-shaped plasmonic array as a narrow-band thermal emitter or biosensor, Opt. Express., 7(6), p (2009) (IF:.88; Ranking: /64 = 5% in Optics,) (also selected by Virtual J. Biomed. Opt. (2009) [40] G. Adamo, K. F. MacDonald, Y. H. Fu, C. M. Wang, D. P. Tsai, F. J. García de Abajo, and N. I. Zheludev*, Light Well: A Tunable Free-Electron Light Source on a Chip, Phys. Rev. Lett. 0, 90 (2009) (IF: 7.8; Ranking: 5/68 = 7% in in Physics, Multidisciplinary) [4] C. M. Wang*, C. C. Chao, H. I Huang, B. Ung, Y. Sheng, and J. Y. Chang, Transmission Enhancement through a Metallic Slit Assisted by Low Scattering Loss Corrugations, Opt. Commun. 28, p (2008) (IF=.552; Ranking: 2/64 = 4% in Optics,) [42] J. W. Pan*, S. H. Tu, C. M. Wang, and J. Y. Chang, High efficiency pocket size projector with a compact projection lens and LED based light source system, Appl. Opt. 47, (2008) (IF=.76; Ranking: 8/64 = 28% in Optics,) [4] C. M. Wang*, Y. C. Chang, M. W. Tsai, Y. H. Ye, C. Y. Chen, Y. W. Jiang, S. C. Lee and D. P. Tsai, Angular independent infrared filter assisted by localized surface plasmon polariton, IEEE Photon. Tech. Lett. 20(), p.0-05(2008) (IF= 2.5 Ranking 6/206=8% in Engineering, Electrical & electronic) [44] C. M. Wang, C. C. Chao, H. I Huang, Y. C. Chang, D. P. Tsai and J. Y. Chang*, Transmission enhancement through single slit embedded in plasmonic multilayer structure, Jpn. J. Appl. Phys. 47(8) p.: (2008) (IF=.222, Ranking 26/68= 8% in PHYSICS, APPLIED) [45] M. L. Wu*, H. C. Lan, C. M. Wang, and J. Y. Chang, Design of Wide-Angle Low-Loss Waveguide Bends Using a Phase-Compensated Effective Microprism, Jpn. J. Appl. Phys. 46(8), 5426, 2007(IF=.222, Ranking 26/68= 8% in PHYSICS, APPLIED) [46] C. M. Wang*, H. I Huang, C. C. Chao, and J. Y. Chang and Y. Sheng, Transmission enhancement through a trench-surrounded nano metallic slit by bump reflectors, Opt. Express. 5(6), , (IF:.88; Ranking: /64 = 5% in Optics,) [47] J. W. Pan*, C. M. Wang, W. S. Sun and J. Y. Chang, Portable digital micromirror device projector using a novel prism, Appl. Opt., 46(22), , 2007(SCI/EI) (IF=.76; Ranking: 8/64 = 28% in Optics,) [48] J. W. Pan*, C. M. Wang, H. C. Lan, W. S. Sun and J. Y. Chang, Homogenized LED illumination using microlens arrays for a pocket-size projector, Opt. Express. 5(7), 048 (2007) (IF:.88; Ranking: /64 = 5% in Optics,) [49] C. M. Wang, Y. C. Chang*, M. W. Tsai, Y. H. Ye, C. Y. Chen, Y. W. Jiang, S. C. Lee and D. P. Tsai, Reflection and emission properties of an infrared emitter, Opt. Express., 5(22), 467(2007) (IF:.88; Ranking: /64 = 5% in Optics,) [50] C. C. Lee*, C. M. Wang, S. K. Huang, J. Y. Chang, G. C. Chi, S. C. Shu, and C. Y. Liu, Fabrication and Tolerance Reducing of Si-Based Pickup Module for Optical Storage, Opt. Eng., 45(7), pp , Jul (IF=0.897 Ranking /56=55% in OPTICS) 4
5 [5] C. M. Wang*, B. Ung, Y. Sheng, and J. Y. Chang, Enhanced Transmission through Nano-Aperture on a Tapered Metallic Substrate, Opt. Commun. 265(2), pp (2006) (IF=.552; Ranking: 2/64 = 6% in Optics,) [52] H. C. Lan, C. C. Cheng, C. M. Wang, M. J. Wu, and J. Y. Chang, A Hybrid Grism-Lens Device for Diffraction Grating Demultiplexer, Opt. Eng. 45(8), (IF=0.897 Ranking /56=55% in OPTICS) [5] C. L. Hsu, Y. C. Liu, C. M. Wang, M. L. Wu, Y. L. Tsai, Y. H. Chou, C. C. Lee, and J. Y. Chang, "Bulk Micromachined Optical Filter Based on Guided-Mode Resonance in Silicon Nitride Membrane," IEEE J. Lightwave Tech., 24(4), pp (2006). (IF=2.76; Ranking: 8/64 = % in Optics,) [54] M. L. Wu, C. L. Hsu, Y. C. Liu, C. M. Wang, and J. Y. Chang, Silicon-Based and Suspended Membrane Type of Guided-Mode Resonance Filters with the Spectrum-Modifying Layer Design, Opt. Lett., (22) pp. -5, (2006). (IF=.772; Ranking: 4/64 = 6% in Optics,) [55] J. Y. Chang, C. M. Wang, C. C. Lee, H. F. Shih and M. L. Wu, Realization of Free-Space Optical Pickup Heads with Stacked Si-based Phase Elements, IEEE Phot. Tech. Lett. 7(), p (2005) (IF= 2.5 Ranking 6/206=8% in ENGINEERING, ELECTRICAL & ELECTRONIC) [56] C. M. Wang*, Y. C. Chang, C. D. Sung, H. T. Tien, C. C. Lee, and J. Y. Chang, Anisotropic Wet Etching on Birefringent Calcite Crystal, Appl. Phys. A., 84(4), p (2005) (IF=.79, Ranking 2/84=27% in PHYSICS, APPLIED) [57] C. M. Wang*, J. Y. Chang, C. L. Hsu, C. C. Lee and J. C. Yang, Si-Based Guided-Mode Resonance Filter on a Microoptical Bench, Electronics Letters, 40(2), p. 5 6 (2004) (IF=.4, Ranking 08/229=47% in ENGINEERING, ELECTRICAL & ELECTRONIC) [58] C. Y. Huang, C. M. Wang, C. F. Chu and J. Y. Chang, Fast response in reduced Rh-doped barium titanate crystals at 00 o C, Opt. Eng. 4, 988(2004) (IF=0.897 Ranking /56=55% in OPTICS) [59] J. Y. Chang, C. Y. Huang, C. F. Chu, C. M. Wang, and C. C. Sun, The Photorefractive Properties of Two Series of BaTiO Crystals Annealed in Temperatures of 900 o C and 000 o C, Jpn. J. Appl. Phys. 42, 540 (200) (IF=.222, Ranking 26/68= 8% in PHYSICS, APPLIED) [60] Y. C. Chang, H. T. Tien, C. D. Sung, C. C. Lee, C. M. Wang, and J. Y. Chang, A Micropolarizer Fabricated from CaCO by Anisotropic Wet Etching, Appl. Opt. 42 p:442 (200) (IF=.76; Ranking: 8/64 = 28% in Optics,) [6] C. C. Lee, Y. C. Chang, C. M. Wang, J. Y. Chang, G. C. Chi, Silicon-based transmissive diffractive optical element, Opt Lett., 28 p. 260 (200) (IF=.772; Ranking: 4/64 = 6% in Optics,) [Selected Journal Paper] [] Chih-Ming Wang, Yia-Chung Chang*, Mohammed Nadhim Abbas, Ming-Hsiung Shih and Din Ping Tsai, T-shaped plasmonic array as a narrow-band thermal emitter or biosensor, selected by Virtual J. Biomed. Opt. (2009) B [] Din Ping Tsai, Wei Ting Chen, Kuang-Yu Yang, Chih-Ming Wang, Yao-Wei Huang, Greg Sun, I-Da Chiang, Chun Yen Liao, Shulin Sun, Lei Zhou, and Ai Qun Liu, Meta-holograms for colorful image storage, SPIE Newsroom (204) [2] Shulin Sun, Kuang-Yu Yang, Wei Ting Chen, Chun Yen Liao, Guang-Yu Guo, Din Ping Tsai, Chih-Ming Wang, Ta-Ko Juan, Wen-Ting Kung, Qiong He, Shiyi Xiao and Lei Zhou, Highly efficient anomalous reflection by an optical metasurface, SPIE Newsroom (20) 5
6 [] Chih-Ming Wang*, Exploiting plasmonics in active photonic device applications, SPIE Newsroom (20) [International Conference Paper] [] Qian Wang, Edward T. F. Rogers, Behrad Gholipour, Chih-Ming Wang, Guanghui Yuan, Jinghua Teng, and Nikolay I. Zheludev, Optically reconfigurable all-dielectric metamaterial and photonic devices, SPIE (206) (Invited Oral presentation) [2] Chih-Ming Wang*, Cost-effective -Fe2O photocatalyst for green applications APICENS 206 [] Chih-Ming Wang* and D. P. Tsai, Narrow band metasurface based on gap-plasmon in lossy cavity, ICNP 206 [4] Chih-Ming Wang* Cost-effective and visible-light-driven photocatalyst for green applications ICNP 206 [5] YW Huang, WT Chen, WY Tsai, PC Wu, CM Wang, G Sun, DP Tsai, Plasmonic Metasurface for Color Hologram, CLEO: QELS_Fundamental Science, FTuC. 7 (205) [6] YW Huang, WT Chen, KY Yang, CM Wang, G Sun, S Sun, L Zhou, AQ Liu, DP Tsai, Reflective Metasurface and Plasmonic Hologram Application, JSAP-OSA Joint Symposia, 9a_C_ (204) [7] YW Huang, WT Chen, KY Yang, CM Wang, PC Wu, G Sun, S Sun, L Zhou, DP Tsai, Polarization controlled colorful images reconstructed by reflective meta-hologram, SPIE NanoScience+ Engineering, 9602D-9602D-4 (204) [8] Pei-han Liao, Chun Yen Liao, Chih-Ming Wang * and Din Ping Tsai, I-shaped plasmonic filter for three primary colors, OPTIC 204 [9] Meng-Chien Lee, Chun-Yu Wang, Che-Chin Chen, Chih-Ming Wang * and Din Ping Tsai, Recycle disposable heating pads as a visible light active photocatalyst for H 2 revolution from water, OPTIC 204 [0] Chieh-En Chien, Chih-Ming Wang * and Chih-Hung Tsai, Synthesis and characterization of perovskite for dye-sensitized solar cell, OPTIC 204 [] Y. W. Huang, W. T. Chien, K. Y. Yang, C. M. Wang, G. Sun, C. Y. Liao, H. T. Lin, A. Q. Liu, and D. P. Tsai, Gold cross-nanoantennas for high efficiency and broadband plasmonic meta-hologram, META 4. (204) [2] Y. W. Huang, W. T. Chien, K. Y. Yang, C. M. Wang, G. Sun, C. Y. Liao, H. T. Lin, A. Q. Liu, and D. P. Tsai, Low-loss broadband plasmonic meta-hologram, International Symposium on NanoPhotonics 204 (ISONP 204) Yu-Jen Chen, Meng-Chang Lee and Chih-Ming Wang*, Dielectric function dependence on temperature for Au and Ag, MOC 20 (accepted) (travel award) [4] Shulin Sun, Kuang Yu Yang, Chih-Ming Wang, Ta-Ko Juan, Wei Ting Chen, Chun Yen Liao, Qiong He, Shiyi Xiao, Wen-Ting Kung, Guang-Yu Guo, Lei Zhou, and Din Ping Tsai, High-efficiency Anomalous Light Reflections by Gradient Meta-surfaces, PIERS 20 6
7 [5] C. M. Wang* Photocorrosion of Plasmonic enhanced Cu x O solar water splitting, ISONP 204 (invited) [6] C. M. Wang* Plasmonic Cu x O photocatalyst for Solar Water Splitting with Visible Light, JSAP-OSA Joint meeting, 20 [7] W. E. Kung, Y. H. Pai, Y. K. Hsu, C. H. Lin and C. M. Wang*, Plasmonic enhanced Cu x O photocatalyst for water splitting, Optics & Photonics Taiwan, International Conference 202 (OPTIC 202, formerly OPT 202) [8] C. Y. Wang and C. M. Wang* Polarization-independent and angle-independent optical filter using plasmonic nanoporous Au film Optics & Photonics Taiwan, International Conference 202 (OPTIC 202, formerly OPT 202) [9] C. M. Wang*, Multi-resonance wavelength using asymmetric plasmonic T-shaped array International Symposium on NanoPhotonics 202 (ISONP 202) (202) [20] C. M. Wang*, Optical properties and applications of plasmonic nanoporous Au film Nanophotonics Asia 202 (202) [2] Kuang-Yu Yang, Shulin Sun, Chih-Ming Wang, Ta-Ko Juan,Wei Ting Chen, Lei Zhou, Din Ping Tsai, " Anomalous reflection based on gradient metamaterial", 2nd Frontiers in Optics and Photonics FOP (202) (poster award) [22] Wen-Ting Kung, Chih-Jui Yu and Chih-Ming Wang*, " Polarization-independent plasmonic porous Au absorber," JSAP-OSA 202 Autumn Meeting (202) [2] Da-Ge Ruan, Wen-Ting Kung, Chih-Ming Wang*, Shien-Der Tzeng, I-Chi Ni, Optical properties of InGaN/GaN MQWs LED patterned with D Plasmonic nanoparticle grating, ThinFilms 202 (202) [24] Chih-Jui Yu and C. M. Wang*, Color Filtering Using Plasmonic Multilayer Structure Nanoelectronics Conference (INEC), 20 IEEE 4th International, p. - 2 (20) [25] C. M. Wang*, Exploiting plasmonics in active photonic device applications: in the point of view of surface plasmon heat dissipation, Nanophotonics in Asia 20 [26] C.-Y. Wei, C.-H. Lin, C.-M. Wang, Y.-C. Pan, Efficiency Improvement of HIT Solar Cells on p-type Si Wafers", ICSI7 (20) [27] C. H. Tai, C. H. Lin, C. M. Wang, and C. C. Lin, Three-terminal a-si solar cells, SSDM (200) [28] Chien-Chang Chao, Chih-Ming Wang, and Jenq-Yang Chang, Spatial quantum efficiency in plasmonic thin film solar cells, MOC 200 [29] C. C. Chao, Y. C. Pan, C. M. Wang, and J. Y. Chang, Optical analysis of haze ratio and antireflection in structured thin film solar cell, AEM2C200 (200) [0] G. Adamo, K. F. MacDonald, N. I. Zheludev, Y. H. Fu, C. M. Wang and D. P. Tsai The Light-well : A Tuneable Nanoscale Free-electron Light Source On-a-Chip, NanoMeta (2009) [] C. M. Wang, Y. C. Chang and D. P. Tsai, Spatial filtering by using cascading plasmonic grating, CLEO(2009) [2] C. C. Chao, C. M. Wang, and J. Y. Chang, Impedance-matching surface plasmon absorber for FDTD siumulation, CLEO(2009) [] Chih-Ming Wang, Hung-I Huang, Chien-Chang Chao and Jenq-Yang Chang, BROADBAND TRANSMISSION CONCENTRATOR FOR MULTI-JUCTION SOLAR CELL, MOC2009 [4] Chih-Ming Wang, Hung-I Huang, Jui-Wen Pan, Hung-Zen Kuo, Hwen-Fen Hong, Hwa-Yuh Shin, and Jenq-Yang Chang, SECOND OPTICS FREE CONCENTRATOR BY USING REFLECTION AND REFRACTION HYBRID PRISM, MOC2009 [5] Sheng-Han Tu, Shih-Han Chen, J. W. Pan, Chih-Ming Wang, Jenq-Yang Chang, 7
8 Increasing the light extraction of thin-gan LEDs by surface structure, MOC2009 [6] Chien-Chang Chao, Chih-Ming Wang, and Jenq-Yang Chang, ALUMINIUM NANO PARTICLE FOR LIGHT ABSORPTION ENHANCEMENT OF THIN FILM SOLAR CELL THROUGH SURFACE PLASMON RESONANCE, MOC2009 [7] C. C. Chao, C. M. Wang, Y. C. Chang, and J. Y. Chang, Plasmonic Multilayer Structure for Ultra thin -Si film Photovoltaic, ODF 2008 [8] S. H. Tu, J. W. Pan, C. M. Wang, Y. C. Lee and J. Y. Chang, New collection systems for multi LED light engine, ODF2008 [9] M. L. Wu, H. C. Lan, C. M. Wang and J. Y. Chang, Effective medium based on two-dimensional photonic crystals for index-confinement waveguide application, SPIE Symposium on Integrated Optoelectronic Devices 2007, San Jose, CA, USA, Jan [40] H. C. Lan, C. C. Chen, C. S. Chang, C. M. Wang, Y. C. Chang, J. Y. Chang, and M. L. Wu, Wide-angle Bending Waveguide Based on Phase-compensated Microprism, MOC 07, Japan, [4] C. M. Wang, C. C. Chao, H. I Huang, Y. C. Chang, D. P. Tsai and J. Y. Chang, Transmission enhancement through single slit embedded in plasmonic multilayer structure, MOC 07, Japan, [42] C. M. Wang, Y. C. Chang and D. P. Tsai, Angular resolved micro photo luminance spectrum of InGaN quantum wells embedded in plasmonic multilayer structure, LED 07, Japan, 2007 [4] M. L. Wu, H. C. Lan, C. M. Wang, and J. Y. Chang, Effective medium based on two-dimensional photonic crystals for index-confinement waveguide application, SPIE Symposium on Integrated Optoelectronic Devices 2007, San Jose, CA, USA, Jan [44] J. Y. Chang, C. L. Hsu, C. M. Wang, Y. C. Liu, M. L. Wu, and T. H. Yang, Silicon-based micro and subwavelength optical elements and applications, Proc. SPIE Aug (invited talk) [45] H. C. Lan, C. M. Wang, M. L. Wu, and J. Y. Chang, Wide-angle Bending Waveguide with Sub-wavelength Effective Microprism, Micro Optics Conference, Seoul Korea, [46] C. M. Wang, H. I. Huang, and J. Y. Chang, Enhanced transmission through a nano-slit bordered by both trenches and bumps nanastructures, SPIE 2006 (Accepted). [47] J. Y Chang, J. K. Sheu, M. L. Wu, Y. C. Lee, C. L. Hsu, C. C. Lee, T. S. Sheu, C. M. Wang, Y. C. Liu, Z. R. Tu, Y. C. Lee, C. F. Huang, S. H Tu, W. P. Lin, C. S. Fan Chiang, T. H. Yang, W. T. Chien, and C. C. Sun, Narrowing spectral width of green LED by GMR structure to expand the color mixing field, SPIE, San-Diego U.S.A [48] C. M. Wang, C. W. Chu, and D. P. Tsai, Enhance energy conversion efficiency of organic solar cell using nanostructured sliver cathode, RIKEN, Japan, 2006 [49] T. C. Lee, H. C. Huang, C. M. Wang, C. L. Hsu, T. H. Yang, and J. Y. Chang, Novel GMR-based biochip, Proc. SPIE Int. Soc. Opt. Eng. 5702, 60 (2005) [50] C. M. Wang, C. L. Hsu, J. Y. Chang and C. C. Lee, Enhance Transmission through a Subwavelength Slit on a Bending Metal Substrate, Proc. SPIE Int. Soc. Opt. Eng. 5927, 59270V (2005) [5] C. L. Hsu, Y. H. Chou, C. M. Wang, J. Y. Chang and C. C. Lee, Monolithic Low Sideband Guided-Mode Resonance Filter Based on Two-Layer Structure, Proc. SPIE Int. Soc. Opt. Eng , (2005). [52] C. C. Lee, C. L. Hsu, C. M. Wang, J. Y. Chang, and G. C. Chi, Si-based UV transparent subwavelength optical elements, Proc. SPIE Int. Soc. Opt. Eng , (2005) 8
9 [5] H. C. Lan, C. S. Cheng, J. Y. Chang, and C. M. Wang, An easy packaging hybrid optical element in grating based WDM application, Proc. SPIE Int. Soc. Opt. Eng , (2005) [54] J. Y. Chang, C. M. Wang, H. I Huang, and C. C. Chao, Enhanced transmission of subwavelength slit on tapered metallic structures, Proc. MOC. H5, p.28-29, Tokyo Japan, Oct.(2005) [55] J. Y. Chang, C. L. Hsu, Yu-Hong Chou, and C. M. Wang, Silicon-based subwavelength guided-mode resonance filter, Proc. MOC. H60, p.26, Tokyo Japan, Oct.(2005) [56] C. C. Lee, C. M. Wang, Che-Lung Xu, Jing Yi Chen, Jenq Yang Chang, Yi Ming Liao, and Gou Chung Chi, Nano-Structured Diffractive Optical Elements on SiN X Membrane for UV-Visible Regime Applications, Proc. SPIE Int. Soc. Opt. Eng. 555, 70 (2004). [57] C. C. Lee, C. M. Wang, and J. Y. Chang, and G. C. Chi, Design and Fabrication of Si-Based Pickup Module for Optical Storage, Proc. SPIE Int. Soc. Opt. Eng. 5524, 78 (2004) [58] C. M. Wang, C. L. Xu, J. Y. Chang and C. C. Lee, Silicon Based Guided-Mode Resonance Nano-Photonic Device, Proc. SPIE Int. Soc. Opt. Eng. 555, 275 (2004) [59] C. M. Wang, H. C. Lan, J. Y. Chang and C. C. Lee, Realization of Optical Pickup Head by Using Stacked Silicon Based Micro optical System, Proc. SPIE Int. Soc. Opt. Eng. 5524, 5 (2004) [60] J. Y. Chang, C. L. Hsu, C. M. Wang, H. C. Lan and C. C. Lee, A Stacked Systems of Optical Pickup Head with Silicon Based Microoptical Elements, Proc. MOC. C-, (2004) [6] J. Y. Chang, Y. C. Chang, C. C. Lee, and C. M. Wang, Microoptical element on SiN x membrane, Proc. SPIE Int. Soc. Opt. Eng. 58, 6 (200) [62] R. L. Chen, C. M. Wang, and J. Y. Chang, Fabricating a silicon microlens mold by ICP dry etching, CLEO Pacific Rim, Taiwan, (200) Invited talk: [] C. M. Wang*,, Optofluidics 207 (207) [2] C. M. Wang*,, SPIE (207) [] C. M. Wang*,, ISOM (207) [4] Qian Wang, Edward T. F. Rogers, Behrad Gholipour, Chih-Ming Wang, Guanghui Yuan, Jinghua Teng, and Nikolay I. Zheludev, Optically reconfigurable all-dielectric metamaterial and photonic devices, SPIE (206) (Invited Oral presentation) [5] C. M. Wang*, Plasmonic thermal emitter APNFO0 (205) [6] C. M. Wang*, Photocorrosion of plasmonic enhanced Cu x O solar water splitting, International Symposium on NanoPhotonics 204 (ISONP 204) [7] C. M. Wang*, Exploiting plasmonics in active photonic device applications: in the point of view of surface plasmon heat dissipation, Nanophotonics in Asia 20 9
10 []. I 4027, 2040~ , I2492,., I220465, ~205.7 / 0/08/0~ 04/07/ 0/08/0~ 02/08/ 0/06/0~ 02/08/ (0-255-S ) (/)(0-220-M ) - (/)(0-220-S ) 02/8~04/7 : (MY) 920,000 4,000,000 2,500,000 2,896,000 00/08~0/7 600,000 99/08/~00/7 之共振模態與光電流對應關 805,000 99/0~99/2 640,000 99/08~02/07 5,000,000 98/08~99/7 能電池之光學特性及異常穿,06,000 透金屬電極之研究 98/05~98/ 500,000 97/09/~98/7 90,000 ( ) 0
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13 200.8~ / [] Kuang-Yu Yang, Shulin Sun, Chih-Ming Wang, Ta-Ko Juan,Wei Ting Chen, Lei Zhou, Din Ping Tsai, " Anomalous reflection based on gradient metamaterial", 2nd Frontiers in Optics and Photonics FOP (202) (poster award)
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