臺大課程網

超穎介面與生醫應用

114-2 開課
  • 流水號

    31032

  • 課號

    PHIM5005

  • 課程識別碼

    K47 U0050

  • 無分班

  • 2 學分
  • 選修

    精準健康碩士學位學程

      選修
    • 精準健康碩士學位學程

  • 駱 遠
  • 四 3, 4
  • 基醫1222

  • 3 類

  • 修課總人數 15 人

    本校 15 人

  • 無領域專長

  • 中文授課
  • NTU COOL
  • 核心能力與課程規劃關聯圖
  • 備註

    與朱正弘合授

  • 本校選課狀況

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  • 課程概述
    Topic/Content 1 Introduction/Plasmonics, metamaterial, and metasurface;Introduction to simulation software 2 Plasmonic metasurfaces/Generalized Snell’s law; Polarization conversion 3 Dielectric metasurfaces/High refractive index materials (GaN, TiO2, Silicon, etc) 4 Geometric phase/Polarization optics;Birefringence, waveplate, lookup table 5 Fundamental optical elements (1)/Metalens 6 Fundamental optical elements (2)/Polarization conversion/generation 7 Fundamental optical elements (3)/Beam shaping 8 Midterm 9 Manufacturing processes for metasurface/Semiconductor fabrication process (E-beam lithography, UV lithography, nanoimprint lithography), fabrication equipment, layout drawing 10 Dispersion-engineered metasurfaces/Achromatic metalens, meta-spectrometer 11 Tunable metasurfaces/Phase change materials, mechanical deformation, chemical reactions, tunable conductivity, and so on. 12 Biomedical applications (1)/Optical sectioning microscopy: confocal microscopy, light sheet microscopy, two-photon microscopy 13 Biomedical applications (2)/Chiral imaging, endoscope, laser treatment 14 Biomedical applications (3)/Phase contrast imaging, bio-sensing 15 Current topics of metasurface/Nonlinear metasurface, inverse design, Huygens' metasurfaces, asymmetric photonic spin-orbit interactions 16 Final project report
  • 課程目標
    此課程將會介紹超穎介面(metasurface)的原理、應用以及在生醫方面最新的發展,並引導修課學生利用數值模擬軟體實際進行超穎介面的計算與設計。
  • 課程要求
    電磁學(Electromagnetism)、基礎光學(Fundamentals of Optics)、Matlab或Python相關課程(Matlab or Python computer coding)
  • 預期每週課前或/與課後學習時數
  • Office Hour
  • 指定閱讀
  • 參考書目
    1. Maier, Stefan A. Plasmonics: fundamentals and applications. Vol. 1. New York: springer, 2007. 2. Wenshan, Cai, and Vladimir Shalaev. "Optical metamaterials: fundamentals and applications." Springer 3 (2010): 1-9. 3. Bozhevolnyi, Sergey I., Patrice Genevet, and Fei Ding, eds. Metasurfaces: Physics and Applications. MDPI, 2018. 4. Chen, Wei Ting, Alexander Y. Zhu, and Federico Capasso. "Flat optics with dispersion-engineered metasurfaces." Nature Reviews Materials 5.8 (2020): 604-620. 5. Arbabi, Amir, and Andrei Faraon. "Advances in optical metalenses." Nature Photonics 17.1 (2023): 16-25. 6. Hsiao, Hui?Hsin, Cheng Hung Chu, and Din Ping Tsai. "Fundamentals and applications of metasurfaces." Small Methods 1.4 (2017): 1600064. 7. Zhang, Shuyan, et al. "Metasurfaces for biomedical applications: imaging and sensing from a nanophotonics perspective." Nanophotonics 10.1 (2020): 259-293.
  • 評量方式
    1. 本校建議 A+ 比例上限為 20% ,非強制規定, 授課教師可依課程要求調整,建議必修課程參考。
    2. 本校採用等第制評定成績,學生成績評量辦法中的百分制分數區間與單科成績對照表僅供參考,授課教師可依等第定義調整分數區間。詳見 學習評量專區
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