Chongqing Institute of Green and Intelligent Technology , Chinese Academy of Sciences
Faculty
Xiao-Yu Peng
  • Professor
  • Doctor
  • xypeng@cigit.ac.cn
  • 023-65935269
  • Center of Quantum Information Technology
Resume

·1984.9-1987.7, Graduation from Department of Physics, Gannan Normal University, Jiangxi, China.

·1995.09-1998.07, M.Sc degree in Optics, Department of Physics, Capital Normal University, Beijing, China.

·1998.08-2001.08, Lecturer of Department of Natural Sciences, Beijing People’s Police College

·2001.09 -2005.02, Ph D degree of Optics, Laboratory of Optical Physics, Institute of Physics, Chinese Academy of Sciences, Beijing, China.

·2005.02-2006.01, Lecturer of Department of Physics, China Mining and Technology University, Beijing, China.

·2006.01-2007.05, Postdoctoral position, Institute for Laser and Plasma physics, Heirich Heine University Düsseldorf, Germany

·2007.05-2008.10, Guest Scientist, Institute for Laser and Plasma physics, Heirich Heine University Düsseldorf, Düsseldorf, Germany

·2008.12-2014.06, Research Scientist, Institute of Material Research and Engineering (IMRE), Agency for Science, Technology and Research (A*STAR), Singapore

·2014.07-now, Professor, Chongqing Institute of Green and Intelligent Technology (CIGIT), Chinese Academy of Sciences (CAS), Chongqing, China

Research Fields

High-field terahertz radiation and its applications

Social Employment
 
Awards and Honors

The 4th Tsai-Shi-Dong Plasma Physics Award in 2004

Representative Papers

1. H. Zhou,X.-Y. Peng*, .Y. Gou, D. Pei, X. Zhang, and J. L. Zhong, “Morphological changes of melanoma cells induced by pulsed terahertz radiation”, J. Infrared. Millim. Te. 43, 829 (2022).

2. W. Sheng, F. Tang, Z. Zheng, Y. Chen, X.-Y. Peng*, and Z.-M. Sheng, “Spectral control of terahertz radiation from inhomogeneous plasma filaments by tailoring two-color laser beams”, Opt. Express 29, 8676 (2021).

3. M. Yu, S. Yan*, Y.-Q Sun, W. Sheng, F. Tang, X.-Y. Peng*, and Y. Hu, “Characterization of Nucleobases in Broadband Terahertz Spectra from 0.5 to 10 THz with the Air-Biased-Coherent-Detection Technique”, Sensors 19,1148 (2019).

4. H.-W. Du, J.-M. Dong, Y. Liu, C.-C. Shi, J.-W. Wu, and X.-Y. Peng*, “A coherent detection technique via optically biased field for broadband terahertz radiation”, Rev. Sci. Instrum. 88, 093104 (2017).

5. X. –Y. Peng*, J. Teng, H. Liu, H. Tanoto, H. Guo, Z.-M. Sheng, and J. Zhang, “Distortion reduction in strong terahertz signals using broadband attenuators with flat transmittance”, J. Phys. D: Appl. Phys. 49, 015501 (2016).

6. X. -Y. Peng*, B. Wang, S. Lai, D. H. Zhang, and J.-H. Teng, “Ultrathin multi-band planar metamaterial absorber based on standing wave resonances”, Opt. Express 20, 27756 (2012).

7. X.-Y. Peng*, X.-H. Zhang, J.-H. Teng, H.-C. Guo, and Y.-L. Foo, "To realize the optimal probe pulse length for detection of pulsed terahertz signal with spectral-encoding technique", Appl. Phys. Lett. 98, 231111 (2011).

8. X.-Y. Peng, R. Jung, T. Toncian, O. Willi, and J.-H. Teng, "Distortion of the intense terahertz signal measured by spectral-encoding technique", Appl. Phys. Lett. 94, 221107 (2009).

9. X.-Y. Peng*, C. Li, M. Chen, T. Toncian, R. Jung, O. willi, Y.-T. Li, W.-M. Wang, S.-J. Wang, F. Liu, A. Pukhov, Z.-M. Sheng, and J. Zhang, "Strong terahertz radiation from air plasmas generated by an aperture-limited Gaussian pump laser beam", Appl. Phys. Lett. 94, 101502 (2009).

X.-Y. Peng*, O. Willi, M. Chen, A. Pukhov, "Optimal chirped probe pulse length for terahertz pulse measurement", Opt. Express 16, 12342 (2008).

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