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Ye Wu
Assistant Professor
Department of Electrical and Electronic Engineering
Phone
+86 (0)512 81889187
Email
Ye.Wu
xjtlu.edu
cn
h-index
67
Citations
5
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2011
2025
Research activity per year
Overview
Fingerprint
Network
Projects
(1)
Research output
(16)
Activities
(5)
Fingerprint
Dive into the research topics where Ye Wu is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Weight
Alphabetically
Physics
First-Principles
100%
Calculation
100%
Phonon
85%
Nanowires
85%
Electronic Structure
85%
Monte Carlo
85%
Electron Mobility
85%
Electronic Structure
85%
Surface Roughness
57%
Electron Mobility
42%
ZnO
42%
Light
42%
Simulation
37%
Energy Gaps (Solid State)
28%
Model
28%
Atoms
28%
Deformation
28%
Acoustics
28%
Monte Carlo Simulation
28%
Pseudopotential
28%
Electron Scattering
28%
Inclusions
28%
Crystals
28%
Impurity
28%
Coefficients
22%
Confinement
17%
Wurtzite
17%
Binding
17%
Diameters
17%
Value
14%
Piezoelectricity
14%
Electrons
14%
Optical Transition
14%
Spontaneous Emission
14%
Impurities
14%
Sites
14%
Steady State
14%
Correlation
14%
Speed
14%
Symmetry
14%
Volume
8%
Region
8%
Increasing
8%
Cores
8%
Optoelectronic Device
6%
Engineering
Auger Recombination
85%
Nanowire
85%
Multiscale
42%
Nanoscale
42%
Reliability
42%
Compensating Fiber
42%
Mach-Zehnder Interferometer
42%
Simulators
30%
Simulation
21%
Models
21%
Crystallographic Orientation
21%
Design
21%
Spontaneous Emission
21%
Optical Transition
21%
Engineering
21%
Surfaces
21%
Hybrid
21%
Performance
21%
Degree of Freedom
21%
Phonon Dispersion
21%
Structural Modification
21%
Molecular Mechanic
21%
Efficiency Droop
21%
Electrostatics
21%
Band Structure
21%
Electronics
21%
Applications
21%
Correlation
21%
Material Parameter
21%
Pepper Noise
21%
Hybrid Optoelectronics
21%
Synaptic Device
21%
Effect of Strain
17%
Active Region
17%
Internal Quantum Efficiency
17%
High Current Density
17%
Hollow Core Fibre
10%
Characteristics
8%
Demonstrates
8%
Simulation Result
8%
Efficiency
8%
Mechanisms
8%
Obtains
8%
Temperature Distribution
6%
Material Science
Surface Roughness
57%
Devices
57%
Semiconductor Device
42%
Piezoelectric Property
42%
Finite Element Method
42%
Thin-Film Transistor
42%
Electronic Structure
42%
Electron Mobility
42%
Carrier Transport
42%
Fiber Optics
42%
Capacitance
42%
Transistor
42%
Electron Mobility
42%
Inclusion
28%
Crystal Symmetry
28%
Hall Mobility
28%
Impurity
28%
Crystal
21%
Contact Resistance
21%
Thermoelectrics
21%
Material
21%
Field Effect Transistor
21%
Electronic Band Structure
21%
Correlation
21%
Structural Relaxation
21%
Nanoelectronics
21%
Surface Structure
21%
Dielectric Material
14%
Velocity
14%
Density
14%
Multilayer
14%
Electronics
14%
Electronic Circuit
14%
Magnetic Fluid
14%
Optoelectronics
6%