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马耀光

性别:男
职称:百人计划研究员(自然科学B类)
单位:光电科学与工程学院
政治面貌:中国共产党党员 参加工作年月:2012-70 学位:工学博士 学历:博士毕业生 通信地址:浙大玉泉校区第三教学楼437 通信地址邮编:310027 电子信箱:mayaoguang@zju.edu.cn

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发表论文

1. Y. Zhai*, Y. Ma*, (contributed equally to the work) S. N. David, D. Zhao, R. Lou, G. Tan, R. Yang, and X. Yin, “Scalable-Manufactured Randomized Glass-Polymer Hybrid Metamaterial for Day-time Radiative Cooling," Science, 355, 1062-1066 (2017). Reported by:The Forbes, The Economists, Science, Scientific American, The Denver Post, Tech times, The Japan times, etc. Highlighted in Nature, Science, Physics Today, Physics World 

2. L. Yao, L. Li, L. Qin, Y. Ma, W. Wang, H. Meng, W. Jin, Y. Wang, W. Xu, G. Ran, L. You and G. Qin, "Efficient small molecular organic light emitting diode with graphene cathode covered by a Sm layer with nanohollows and n-doped by Bphen:Cs2CO3 in the hollows," Nanotechnology 28, 105201 (2017). 

3. Y. Ma, Q. Huang, T. Li, J. Villanueva, N. H. Nguyen, J. Friend, and D. J. Sirbuly, "a local nanofiber optic ear," ACS Photonics 3, 1762–1767 (2016). Highlighted in Nature Photonics 10, 691 (2016). 

4. H. Zhang, Y. Wan, Y. Ma, W. Wang, Y. Wang, and L. Dai, "Interference Effect on Optical Signals of Monolayer MoS2," Applied Physics Letters 107, 101904 (2015). 

5. H. Zhang, Y. Ma, Y. Wan, X. Rong, Z. Xie, W. Wang, and L. Dai, "Measuring the Refractive Index of Highly Crystalline Monolayer MoS2 with High Confidence," Scientific Reports 5, 8440 (2015). ESI高引用论文

6. Z. Yang, D. Wang, C. Meng, Z. Wu, Y. Wang, Y. Ma, L. Dai, X. Liu, T. Hasan, and X. Liu, "Broadly Defining Lasing Wavelengths in Single Bandgap-Graded Semiconductor Nanowires," Nano Letters 14, 3153-3159 (2014). 

7. H. Qian*, Y. Ma*, Q. Yang*, (contributed equally to the work) B. Chen, Y. Liu, X. Guo, S. Lin, J. Ruan, X. Liu, and L. Tong, "Electrical Tuning of Surface Plasmon Polariton Propagation in Graphene–Nanowire Hybrid Structure," ACS Nano 8, 2584-2589 (2014). ACS Editor’s choice 

8. W. Yang, Y. Wang, Y. Ma, C. Meng, X. Wu, and Q. Yang, "Lasing Characteristics of Curved Semiconductor Nanowires," Frontiers of Optoelectronics 6, 448-451 (2013). 

9. C. Liu, Y. Ma, W. Li, and L. Dai, "The Evolution of Raman Spectrum of Graphene with The Thickness of SiO2 Capping Layer on Si Substrate," Applied Physics Letters 103, 213103 (2013). 

10. X. Guo, Y. Ma, Y. Wang, and L. Tong, "Nanowire Plasmonic Waveguides, Circuits and Devices," Laser & Photonics Reviews 7, 855-881 (2013). 

11. Y. Ma, X. Guo, X. Wu, L. Dai, and L. Tong, "Semiconductor Nanowire Lasers," Advances in Optics and Photonics 5, 216-273 (2013). 

12. Y. Lu, F. Gu, C. Meng, H. Yu, Y. Ma, and L. Tong, "Multicolor Laser from a Single Bandgap-Graded CdSSe Alloy Nanoribbon," Optics Express 21, 22314–22319 (2013). 

13. Y. Li, F. Wei, Y. Ma, H. Zhang, Z. Gao, L. Dai, and G. Qin, "Selected-Control Hydrothermal Synthesis and Photoresponse Properties of Bi2S3 Micro/Nanocrystals," CrystEngComm 15, 6611 (2013). 

14. W. Yang, Y. Ma, Y. Wang, C. Meng, X. Wu, Y. Ye, L. Dai, L. Tong, X. Liu, and Q. Yang, "Bending Effects on Lasing Action of Semiconductor Nanowires," Optics Express 21, 2024-2031 (2013). 

15. Y. Wang, Y. Ma, X. Guo, and L. Tong, "Single-Mode Plasmonic Waveguiding Properties of Metal Nanowires with Dielectric Substrates," Optics Express 20, 19006-19015 (2012). 

16. G. Wang, X. Jiang, M. Zhao, Y. Ma, H. Fan, Q. Yang, L. Tong, and M. Xiao, "Microlaser Based on a Hybrid Structure of a Semiconductor Nanowire and a Silica Microdisk Cavity," Optics Express 20, 29472-29478 (2012). 

17. Y. Ma and L. Tong, "Optically Pumped Semiconductor Nanowire Lasers," Frontiers of Optoelectronics 5, 239247 (2012). 

18. Z. Hu, W. Li, Y. Ma, and L. Tong, "General Approach to Splicing Optical Microfibers via Polymer Nanowires," Optics Letters 37, 4383-4385 (2012). 

19. X. Zhang, Z. Ma, H. Yu, X. Guo, Y. Ma, and L. Tong, "Plasmonic Resonance of Whispering Gallery Modes in an Au Cylinder," Optics Express 19, 3902-3907 (2011). 

20. J. Lin, S. Yu, Y. Ma, W. Fang, F. He, L. Qiao, L. Tong, Y. Cheng, and Z. Xu, "On-Chip Three-Dimensional High-Q Microcavities Fabricated by Femtosecond Laser Direct Writing," Optics Express 20, 10212-10217 (2012). 

21. Y. Ye, Y. Ma, S. Yue, L. Dai, H. Meng, Z. Li, L. Tong, and G. Qin, "Lasing of CdSe/SiO2 Nanocables Synthesized by The Facile Chemical Vapor Deposition Method," Nanoscale 3, 3072-3075 (2011). 

22. Z. Ma, X. Zhang, X. Guo, Q. Yang, Y. Ma, and L. Tong, "Surface Plasmon Excitation in Silver Nanowires Directly Deposited on a Laser Diode Chip," Applied Physics Letters 96, 051119 (2010). 

23. Y. Ma, X. Li, H. Yu, L. Tong, Y. Gu, and Q. Gong, "Direct Measurement of Propagation Losses in Silver Nanowires," Optics Letters 35, 1160-1162 (2010). 

24. Y. Ma, X. Li, Z. Yang, H. Yu, P. Wang, and L. Tong, "Pigtailed CdS Nanoribbon Ring Laser," Applied Physics Letters 97, 153122 (2010). 

25. X. Guo, M. Qiu, J. Bao, B. J. Wiley, Q. Yang, X. Zhang, Y. Ma, H. Yu, and L. Tong, "Direct Coupling of Plasmonic and Photonic Nanowires for Hybrid Nanophotonic Components and Circuits," Nano Letters 9, 4515-

4519 (2009). Highlighted in Nature China and NPG Asia Materials