跳至主導覽
跳至搜尋
跳過主要內容
國立成功大學 首頁
English
中文
在 國立成功大學 搜尋內容
首頁
概要
研究單位
研究成果
專案
學生論文
設備
獎項
活動
查看斯高帕斯 (Scopus) 概要
張 世慧
教授
光電科學與工程學系
電話
886 6 2757575 ext 63920
電子郵件
gilbert
mail.ncku.edu
tw
h-index
5516
引文
27
h-指數
按照存儲在普爾(Pure)的出版物數量及斯高帕斯(Scopus)引文計算。
1998
2021
每年研究成果
概覽
指紋
網路
專案
(11)
研究成果
(94)
類似的個人檔案
(6)
監製作品
(26)
指紋
查看啟用 Shih-hui Chang 的研究主題。這些主題標籤來自此人的作品。共同形成了獨特的指紋。
排序方式
重量
按字母排序
Material Science
Surface Plasmon
100%
Finite Difference Method
63%
Nanostructure
58%
Surface (Surface Science)
57%
Lithography
43%
Nanoparticle
35%
Film
35%
Surface Plasmon Resonance
30%
Gallium Arsenide
25%
Chirality
24%
Metal Nanoparticle
21%
Cholesteric Liquid Crystals
18%
Quantum Dot
18%
Metamaterial
18%
Density
17%
Photoluminescence
15%
Surface-Enhanced Raman Spectroscopy
14%
Nanorod
12%
Liquid Crystal
12%
Solar Cell
12%
Waveguide
12%
Metal Film
11%
Atomic Force Microscopy
10%
Heterojunction
9%
Optical Property
9%
Periodic Structure
9%
Theoretical Calculation
8%
Refractive Index
8%
Oscillator
7%
Organic Solar Cells
7%
Nanosphere
7%
Lineshape
7%
Quantum Well
7%
Photovoltaics
6%
Built-in Electric Field
6%
Surface Charge
6%
Metal Oxide
6%
Thin Films
6%
Semiconductor Laser
6%
Antenna
6%
Particle Shape
6%
Zinc Oxide
6%
Absorption Spectroscopy
6%
Silver
6%
Titanium Dioxide
6%
Nanocavity
6%
Surface Active Agent
6%
Polymer Films
6%
Indium Gallium Arsenide
6%
Nitride Compound
6%
Keyphrases
Nanoparticles
30%
Near-field
28%
Surface Plasmon
24%
Oblique Incident Light
24%
Metallic Nanostructures
24%
Gammadions
24%
Phase Pattern
24%
Photoreflectance
21%
InAlAs
20%
Finite-difference Time-domain Method
18%
Near-field Scanning Optical Microscope
18%
Optical chirality
18%
Surface-enhanced Infrared Absorption Spectroscopy (SEIRAS)
18%
Surface State Density
17%
Surface Fermi Level
16%
Surface Plasmon Resonance
15%
Room Temperature
13%
Circular Dichroism
12%
Illumination Mode
12%
InGaAsP
12%
Add-drop Filter
12%
Filtering Response
12%
Finite-difference Time-domain
12%
Lattice Matching
12%
Surface States
12%
Microdisk Laser
12%
Lasing Emission
12%
Microdisk Resonator
12%
Wafer Bonding
12%
Resonant Effect
12%
Split-field
12%
Silicon Waveguide
12%
Gap Coupled Antenna
12%
Chirality Enhancement
12%
Vertical Cut
12%
Optical Filters
12%
Plasmonic Nanodisk
12%
Avoided Resonance Crossing
12%
Perfect Absorption
12%
Reciprocal Effects
12%
Built-in Electric Field
11%
Resonance Peak
11%
Far-field Coupling
10%
Band Gap
9%
Red-shifting
9%
Collection Mode
9%
Polarized Light
9%
Fringe Pattern
9%
Multiphoton Processes
9%
Dependant
9%
Engineering
Nanoparticle
53%
Surface Plasmon
50%
Surface State
24%
Resonator
24%
Optical Microscope
24%
Nanomaterial
22%
Photoreflectance
21%
Fermi Level
20%
Gallium Arsenide
19%
Infrared Absorption
18%
Antenna
18%
Wafer Bonding
18%
Optical Filter
18%
Plasmonics
18%
Thin Films
12%
Drop Filter
12%
Optical Field
12%
Time Domain
12%
Lithography
12%
Quantum Dot
12%
Glass Substrate
11%
Free Spectral Range
10%
Electric Field
10%
Solar Cell
9%
Light Incident
9%
Layer Thickness
9%
Schr Dinger Equation
9%
Atomic Force Microscopy
9%
Barrier Height
8%
Metal Nanoparticle
8%
Bonding Process
8%
Raman Spectra
8%
Field Amplitude
7%
Nanosphere Lithography
7%
Nanofabrication Process
7%
Aluminium Gallium Arsenide
7%
Quantum Well
7%
Room Temperature
7%
Selective Surface
7%
Pump Power
6%
Delay Time
6%
Refractive Index
6%
Refractivity
6%
Scattering Medium
6%
Scattered Field
6%
Indium Gallium Arsenide
6%
Liquid Crystal
6%
Error Signal
6%
Enhancement Factor
6%
Quantitative Evaluation
6%