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College of Optoelectronic Engineering


Founded in 2006, the College of Optoelectronic Engineering is to educate the leaders of next generation in the field of Optoelectronics in China.

Faculty and Staff at The CIOEE are fully dedicated to providing a challenging and enjoyable educational experience in the broad field of Optoelectronics through academic instruction, laboratory exercises, informal events, and networking. An active international academic exchange and a suitable environment of innovation are created for students as well. The CIOEE currently awards bachelor, masters and PhD degrees in Optical Engineering, Physical Electronics, Electronic Circuit and System, and Measurement and Control Technology and Instrumentation. Another two undergraduate programs: Optoelectronic Information Engineering and Science and Technology of Optoelectronics will also be available soon in the CIOEE.

The CIOEE currently consists of 10 adjunct professors, 14 associate professors with Optoelectronics and Optics joint appointments in the Institute of Optoelectronics. In addition, 5 post-doctorial scientists carry out advanced research. However, the college will recruit more full-time faculty members during the period of eleven-fifth development plan of SZU.

The College of Optoelectronic Engineering is currently located in the Building of the Institute of Optoelectronics.

 Research Labs:
Optical Metrology Lab, Ultrafast Electronics Lab, Biophotonics Lab, 
Packaging Lab, Display technology Lab, Display Device Testing Lab,
Electronics Lab, Ultrafast Equipment Lab, Microscopy Lab,
Laser Applications Lab, Spectral Analysis Lab, Static Test Lab,
X-ray phase contrast Imaging Lab, Optoelectron material and device Lab

Scholarship:
Niu Hanben Scholarship
NanTai Scholarship

Undergraduate Programs:
Optoelectronic Information Engineering
Measurement & Control Technology and Instruments
Photonics Technology and Science (under construction)

Graduate Programs:

I. Physical Electronics
Technology of Photoelectrical Communication
Optoelectronic Material and Device
Micro-nano Technology
Bio-photonics

II. Circuits and System
Digital Control Technology and Application
Image Acquisition and Processing
Signal Inspection and Digital Processing

III. Optical Engineering
Image Information Acquisition and Display Technique
Laser Technique and System
Photon Technology and Devices
Optical Technique and Instrument

Research:

I. The opto-electronic devices and system of image information acquiring

II.The opto-electronic devices and system of flat display

III. The GaN based semiconductor opto-electronic material, devices
 
IV.The Implement of Micro-nanooptics and Micro-nanophonotics

1. Micro Analysis lab
 
Scanning Electron Microscope
Resolution: 3nm, 4.5nm
Magnification: 18-300,000× (136 level)
Accelerating voltage: 0.3 ~ 30KV
Energy Dispersive resolution: Be(4) ~ U(92)
the range of temperature: -20°C ~   normal temperature
 
Scanning Probe Microscope System
Resolution: X,Y:0.2nm, Z:0.01nm
Function of measurement: AFM, FFM, DFM, MFM, STM, SMM/KFM, VE-AFM, FFM
Dimension of sample: ø35×10mm
 
Surface Profile Measurement System & Accessories
Range of measurement: 100Å ~ 1,310KÅ
Resolution: 1Å/65KÅ; 10Å/655KÅ; 20Å/1,310KÅ
Scanning length: 50μm ~ 50mm
Maximum thickness of sample: 45mm
Maximum diameter of sample: 165mm

Micron X.Y.Z. Detector
Resolution: 1μm
Maximum size of sample: 300×400×10mm

3-D Video Microscope
Available pixel: 984×850
Resolution: H>560TVL,V>400TVL, S/N>54
Electronic shutter: AUTO,OFF,1/100 ~ 1/8000
The kind to measurement: distance, area, angle, semidiameter etc.

2. Spectral and optics Measure lab
 
UV/VIS/NIR Spectrometer
Range of wavelength: 175 ~ 3300nm
Precision of wavelength: ±0.08nm(UV/VIS),
                                   ±0.30nm(NIR)
Room for sample: 200mm × 200mm

Vacuum UV Monochromator
Focus: 500mm
Aperture: 6.9

Optical Tools
 
Spectra Scan Spectroradiometer
Range of wavelength: 380~700nm
Sensitivity: 0.003Cd/m2
Precision of brightness: ±2%
Precision of spectrum: ±2nm
Precision of chroma: x±0.0015, y±0.001
 
3. Materials & Devices Analysis lab
 
Fluorescence Spectrophotometer
Inspired light range: 200-800nm
Fixation slit width: 10nm
Fluorescence, phosphorescence, octilucence and chemiluminescence can be measured by fluorescence spectrophotometer

Laser Raman Spectrograph
Spectrum resolution under the model of green light excitation: ≤0.2 cm-1
Minimum wave number: 5cm-1
Space resolution: 1μm
Data processing: LabSpec software bag, especially applied to the Raman linetype simulation

High Resolution X-Ray Diffractometer
X-ray generator: 3KW
X-ray tube: Cu
Detector: direct ratio detector, energy resolution < 19%
Goniometer: work range of q axis: 0°~150°,0.001°/step
work range of 2q axis: 0°~150°,0.001°/step
Specimen stage: level type,ψ axis: -5°~90°, 0.1°/step; φ axis: 360°, 0.1°/step
 
Photoluminescence mapping System
The kind of excitated light: white light, HeCd/325nm laser
Grating: UV300-600; VIS500-11000
Detector: Si 300-1100nm Under the model of white light excitation, the range of spectrum 400-2600nm

Temperature Variable Hall System
Resistance: 10-4Ω·cm ~ 1013Ω·cm    (<±5%)
Carrier mobility: 1cm2/V·s~107cm2/V·s (<±5%)
Carrier concentration: 103cm-3 ~ 1019cm-3 (<±5%)
Magnetic field range: Up to ±14000 gauss
Temperature range: 80K ~ 400K
 
L-I-V (Laser Diode test System)
Current resolution: 0~1A; 10pA
Voltage resolution: 0~200V; 10μV
Power resolution: 0~5W; 10nW
Detected wavelength range: 190nm-1100nm
Work temperature: -20°C ~ 60°C
Storage temperature: -55°C ~ 80°C
 
4. Electric signal Measure lab

Logic Analyzer
5 channel module
Sample resolution: 500ps
Maximum sample speed: 400MHz, comprise of 2 102 channel module and 2 136 channel module
Speed of 476 136channel module:200MHz
 
Digital Sampling Oscilloscope
Bandwidth:500Hz
Plumb resolution: 14Bits
Main Time-Base and magnify Time-Base: 0.5ps/div ~ 5ms/div(0.1ps step)
Precision of time interval: 4ps(interval≥1ns),2.5ps(interval =100ps),1ps(interval≤10ps)
Input impedance5 0Ω
Dynamic Range: 1.0V
Rise time: 7ps
Maximum input voltage: 2.0V

Oscilloscope(500M)
Color Digital Phosphor Oscilloscope (2G)

5. Ultra-short Pulse Laser Source
 
ps-YAG  Pulse Laser
 
Femtosecond Laser System