Wang Yuye
School
School of Precision Instrument and Optoelectronics Engineering
Professional Title
Professor
Discipline
Optical Engineering
Contact Information
27406436
yuyewang@tju.edu.cn
Room No. 202, Area C, Building 26, School of Precision Instrument and Optoelectronics Engineering, Tianjin University, No. 92, Weijin Road, Nankai District, Tianjin, China
Education Background
- Doctoral Degree| Tianjin University| Physics Electronics| 2009
- Master Degree| Tianjin University| Physics Electronics| 2006
- Bachelor Degree| Tianjin University| Electronic Science and Technology| 2004
Research Interests
- Terahertz-wave generation and its applications in biomedicine
- All-solid-state laser and nonlinear optics
Positions & Employments
-
2021.6-Now
School of Precision Instrument and Optoelectronics Engineering | Tianjin University | Professor  -
2009.12-2014.6
School of Precision Instrument and Optoelectronics Engineering | Tianjin University | Lecturer  -
2009.7-2011.8
Tera-Photonics Laboratory | Riken, Japan | Postdoctoral Researcher 
Academic Achievements
- Papers
- [1] High-energy, continuously tunable intracavity terahertz-wave parametric oscillator
- [2] Fast Terahertz Imaging based on Compressive Sensing, The 8th International Symposium on Ultrafast Phenomena and Terahertz Waves
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- [3] Widely tunable terahertz parametric oscillator based on MgO-doped near-stoichiometric LiNbO3 crystal
- [4] THz wave parametric oscillator with a surface-emitted ring cavity configuration
- [5] Attenuated Total Internal Reflection Imaging with Continuous Terahertz Wave
- [6] Enhanced stimulated polariton scattering in KTiOPO4 terahertz parametric oscillator based on green laser pumping
- [7] Biomedical diagnosis of Cerebral Ischemia with Continuous-wave THz Imaging
- [8] High-energy, continuously tunable intracavity terahertz-wave parametric oscillator
- [9] Biomedical diagnosis in water concentration of thin biotissues using tunable THz-wave parametric oscillator
- [10] Sensitive THz-wave measurement of water concentration mapping in thin fresh tissues with proper sample preparation
- [11] The study of water concentration measurement in tissues with terahertz-wave parametric source
- [12] An analysis of accuracy for water concentration measurement in thin biological tissues using THz-wave
- [13] The 5th Workshop of the Stimulated Brillouin Scattering and Phase Conjugation
- [14] High-energy, tunable intracavity terahertz-wave parametric oscillator with surface-emitted configuration
- [15] High-power high-efficiency picosecond 355nm ultraviolet laser based on La2CaB10O19 crystal
- [16] Study of the properties of BaGa4Se7 crystal in the terahertz region, The 40th International Conference on Infrared
- [17] 太赫兹波近场成像综述
- [18] Experimental investigation on the fast imaging of terahertz continuous wave transmission-mode point scanning
- [19] Low-loss Terahertz waveguide with InAs-Graphene-SiC structure
- [20] Thermo-optic characteristics of micro-structured optical fiber infiltrated with mixture liquids
- [21] High energy terahertz parametric oscillator based on surface-emitted configuration
- [22] An analytical study of water concentration measurement in tissues with THz-wave
- [23] Sensitive water concentration mapping in thin fresh tissues using tunable THz-wave parametric oscillator
- [24] 全固态激光电视的研究
- [25] High-energy pulsed eye-safe intracavity optical parametric oscillator at 1.57μm
- [26] 准连续侧面泵浦TEM00模被动调Q Nd:YAG激光器的研究
- [27] Precise calculation of the KTP crystal used as both an intracavity electro-optic Q-switch and a second harmonic generator
- [28] 全固态激光电视的研究
- [29] Threshold characteristic of intracavity optical parametric oscillator pumped by all-solid-state Q-switched laser
- [30] High-peak-power, high-repetition-rate intracavity optical parametric oscillator at 1.57μm
- [31] Numerical Modelling of QCW-Pumped Passively Q-Switched Nd:YAG Lasers
- [32] Passively Q-switched quasi-cw diode-pumped intracavity optical parametric oscillator at 1.57μm
- [33] A high-power high-stability Q-switched green laser with intracavity frequency doubling using a diode-pumped composite ceramic Nd:YAG laser
- [34] High-energy,fast tunable terahertz parametric oscillator
- [35] Terahertz wavemeter based on scanning Fabry–Perot interferometer: accuracy and optimum designation
- [36] A study of the multi-mode pumping of terahertz parametric oscillators
- [37] Energy scaling of a tunable terahertz parametric oscillator with a surface emitted configuration
- [38] A high-energy, low-threshold tunable intracavity terahertz-wave parametric oscillator with surface-emitted configuration
- [39] High-energy pulsed laser of twin wavelengths from KTP intracavity optical parametric oscillator
- [40] Terahertz-wave water concentration and distribution measurement in thin biotissue based on novel sample preparation
- [41] Study of water concentration measurement in thin tissues with terahertz-wave parametric source
- [42] High-energy THz wave parametric oscillator with a surface-emitted ring-cavity configuration
- [43] Single pixel imaging with tunable terahertz parametric oscillator
- [44] Green laser induced terahertz tuning range expanding in KTiOPO4 terahertz parametric oscillator
- [45] High power, widely tunable dual-wavelength 2 μm laser based on intracavity KTP optical parametric oscillator
- [46] High-pulse-energy mid-infrared optical parametric oscillator based on BaGa4Se7 crystal pumped at 1.064μm
- [47] High-average-power, high-repetition-rate tunable terahertz difference frequency generation with GaSe crystal pumped by 2μm dual-wavelength intracavity KTP optical parametric oscillator
- [48] High-sensitivity attenuated total internal reflection continuous-wave terahertz imaging
- [49] Terahertz Imaging Based on Morphological Reconstruction
- [50] Energy scaling and extended tunability of terahertz wave parametric oscillator with MgO-doped near-stoichiometric LiNbO3 crystal