Engineering
Energy Dissipation
76%
Ray Photoelectron Spectroscopy
72%
Electron Energy
58%
Photoelectron
47%
Scattering Cross Section
36%
Cross Section
33%
Thin Films
29%
Hard X-Rays
29%
Excitation Spectrum
29%
Photoemission
25%
Dielectrics
22%
Mean Free Path
21%
Loss Spectrum
20%
Silicon Dioxide
18%
Energy Engineering
16%
Ambient Pressure
13%
Core Level
13%
Phase Composition
12%
Band Gap
11%
Dielectric Function
10%
Nanoparticle
10%
Loss Function
9%
Input Parameter
9%
Gas Pressure
9%
Nanomaterial
8%
Peak Intensity
7%
Model Response
7%
Peak Shape
6%
Surface Coverage
6%
Diamond
6%
Excitation Energy
6%
Shape Analysis
6%
Time-of-Flight
6%
Fibre Surface
5%
Shell Thickness
5%
Effective Energy
5%
Surface Effect
5%
Theoretical Study
5%
Material Science
Surface (Surface Science)
83%
Electron Energy Loss Spectrometry
61%
X-Ray Photoelectron Spectroscopy
47%
Dielectric Material
39%
Optical Property
37%
Auger Electron Spectroscopy
32%
Thin Films
30%
Electronic Property
27%
Photoemission Spectroscopy
19%
Oxide Compound
16%
Film
12%
Film Thickness
12%
Nanoparticle
12%
Electron Transfer
11%
Phase Composition
11%
Transistor
11%
Indium
9%
Silver
9%
ZnO
9%
Cerium Oxide
9%
Secondary Ion Mass Spectrometry
9%
Desorption
9%
Tin Oxide
9%
Density
7%
Polystyrene
6%
Annealing
6%
Wool Fiber
6%
Surface Analysis
6%
Electron Spectroscopy
6%
Refractive Index
5%
Nanostructure
5%
Single Crystal
5%
Physics
X Ray Spectroscopy
100%
Electron Energy
44%
Photoelectron
41%
Scattering Cross Section
35%
Electron Scattering
26%
Photoelectron Spectroscopy
24%
Dielectric Material
23%
Optical Property
23%
Inelastic Scattering
22%
Photoelectric Emission
22%
Thin Films
21%
Electron Spectroscopy
18%
Vertical Distribution
18%
Volume
17%
Mean Free Path
14%
Chemical Element
9%
Nanoscale
9%
Film Thickness
8%
Nanomaterial
8%
Transition Metal
7%
Machine Learning
6%
Kinetic Energy
6%
Elastic Scattering
6%
Indium
5%
Scanning Electron Microscopy
5%
Synchrotron
5%