个人简介
马军,男,博士,副研究员,博士生导师。
2009年于华中科技大学光电工程系获学士学位,2014年于香港理工大学电机工程系获博士学位。2015-2016于美国华盛顿大学(圣路易斯)从事博士后研究工作。2016年9月,任暨南大学光子技术研究院副研究员。
主要从事光纤传感、光声光谱与成像技术方面的研究,主持国家自然科学基金面上、青年基金项目、广东省自然科学基金面上项目等项目6项,在APL Photonics、Photoacoustics、Photonics Research、APL、OL等本领域权威刊物和会议上发表论文60余篇,研究成果多次被遴选为封面、精选文章以及媒体转载报道,单篇论文最高SCI他引210余次,多次在OFS、Photonics West、CIOP等国际会议上做邀请报告和口头报告,获授权发明专利9项。入选广东省“珠江人才计划”青年拔尖人才,暨南大学“双百英才计划”暨南杰青(第一、第二层次)培养对象。
讲授课程:本科生课程《电磁场与电磁波》,54学时,3学分。
代表性论著
1. Enbo Fan, Haojie Liu, Chao Wang*, Jun Ma*, and Bai-Ou Guan, “Compact optical fiber photoacoustic gas sensor with integrated multi-pass cell,” Photoacoustics, vol. 32, pp. 100524, 2023.
2. Jun Ma, Jing Zhao, Huiwen Chen, Lipeng Sun, Jie Li, and Bai-Ou Guan*, “Transparent microfiber Fabry-Perot ultrasound sensor with needle-shaped focus for multiscale photoacoustic imaging,” Photoacoustics, vol. 30, pp. 100482, 2023.
3. Haojie Liu, Yuhan Wu, Chengtian Hou, Zitao Chen, Bingyan Shen, Zhiwei Luo, Hao Liang, Jun Ma*, and Bai-Ou Guan*, “Ultrasound pulse generation through continuous-wave laser excited thermo-cavitation for all-optical ultrasound imaging,” APL Photonics, vol. 8, pp. 046102, 2023.
4. Haojie Liu, Enbo Fan, Hexiang Xu, Yuhan Wu, Yang He, Jie Li, Jun Ma*, and Bai-Ou Guan, “Encapsulated Microbubble Fiber-Tip Fabry-Perot Cavity With Tunable Bandwidth for Sensitive Acoustic Detection,” J. Light. Technol., vol. 40, pp. 2523-2529, 2022.
5. Guirong Dai, Nan Yu, Shuling Zhang, Lipeng Sun, Jie Li, Jun Ma*, and Bai-Ou Guan*, “Photothermally stabilized Fabry-Perot cavity with patterned nanofilm for photoacoustic trace gas sensing,” Sens. Actuators B: Chem., vol. 355, pp. 131259, 2022.
6. Xue Bai, Xu Li, Jun Ma*, Bai-Ou Guan, “Improvement in resolution of fiber-laser photoacoustic tomography based on a virtual-point concept,” Vis. Comput. Ind. Biomed. Art, vo. 4, pp. 1-7, 2021.
7. Jun Ma, Yang He, Xue Bai, Li-Peng Sun, Kai Chen, Kyunghwan Oh, and Bai-Ou Guan*, “Flexible microbubble-based Fabry–Pérot cavity for sensitive ultrasound detection and wide-view photoacoustic imaging,” Photonics Res., vol. 8, pp. 1558-1565, 2020.
8. Xue Bai, Jun Ma*, Xu Li, Long Jin, and Bai-Ou Guan, “Focus-tunable fiber-laser ultrasound sensor for high-resolution linear-scanning photoacoustic computed tomography,” Appl. Phys. Lett., vol. 116, pp. 153701, 2020.
9. Jun Ma, Yanglin Zhou, Xue Bai, Kai Chen, and Bai-Ou Guan*, “High-sensitivity and fast-response fiber-tip Fabry-Perot hydrogen sensor with suspended palladium-decorated graphene,” Nanoscale, vol. 11, pp. 15821-15827, 2019.
10. X. Bai, Y. Qi, Y. Liang, J. Ma*, L. Jin*, and B. O. Guan, “Photoacoustic computed tomography with lens-free focused fiber-laser ultrasound sensor,” Biomed Opt Express, vol. 10, no. 5, pp. 2504-2512, 2019.
11. J. Ma, G. Wang, L. Jin, K. Oh, and B.-O. Guan, “Photothermally generated bubble on fiber (BoF) for precise sensing and control of liquid flow along a microfluidic channel,” Opt. Express, vol. 27, no. 14, pp. 19768-19777, 2019.
12. H. Xu, G. Wang, J. Ma*, L. Jin, K. Oh, and B.-O. Guan, “Bubble-on-fiber (BoF): a built-in tunable broadband acousto-optic sensor for liquid-immersible in situ measurements,” Opt. Express, vol. 26, pp. 11976-11983, 2018.
13. J. Ma, J. Shi, P. Hai, Y. Zhou, and L. V. Wang, “Grueneisen Relaxation Photoacoustic Microscopy In Vivo,” J. Biomed. Opt.21, 066005 (2016).
14. J. Ma, Y. Yu, and W. Jin, “Demodulation of Diaphragm Based Acoustic Sensor Using Sagnac Interferometer with Stable Phase Bias,” Optics Express23, 29268-29278 (2015).
15. J. Ma, W. Jin, H. Xuan, C. Wang, and H. L. Ho, “Fiber-Optic Ferrule-top Nano-Mechanical Resonator with Multilayer Graphene Film,” Opt. Lett. 39, 4769–4772 (2014).
16. J. Ma, H. Xuan, H. L. Ho, W. Jin, Y. Yang, and S. Fan, “Fiber-Optic Fabry-Pérot Acoustic Sensor with Multilayer Graphene Diaphragm,” IEEE Photon. Technol. Lett. 25, 932-935 (2013).
17. J. Ma, W. Jin, H. L. Ho, and J. Y. Dai, “High-Sensitivity Fiber-Tip Pressure Sensor with Graphene Diaphragm,” Opt. Lett. 37, 2493-2495 (2012).
18. J. Ma, J. Ju, L. Jin, and W. Jin, “A Compact Fiber-Tip Micro-Cavity Sensor for High Pressure Measurement,” IEEE Photon. Technol. Lett. 23, 1561-1563 (2011).
19. J. Ma, J. Ju, L. Jin, W. Jin, and D. N. Wang, “Fiber-Tip Micro-Cavity for Temperature and Transverse Load Sensing,” Optics Express 19, 12418-12426 (2011).
代表性科研项目
1. 国家自然科学基金面上项目,批准号:62275106,2023年—2026年,主持
2. 广东省自然科学基金面上项目,批准号:2023A1515011415,2023年—2025年,主持
3. 广东省自然科学基金面上项目,批准号:2022A1515010105,2022年—2024年,主持
4. 广州市基础与应用基础研究项目,批准号:202201010578,2022年—2024年,主持
5. 国家自然科学基金重点项目, 批准号:62135006,2022年—2026年,参与
6. 国家自然科学基金青年项目,批准号:61705082,2018年—2020年,已结题
7. 广东省自然科学基金自由申请项目,批准号:2017A030313361,2018年—2020年,已结题
授权专利
1. 国家发明专利,授权号:202110499764.X,名称:一种光纤法布里-珀罗声波传感器信号解调系统及方法
2. 国家发明专利,授权号:201911210895.0,名称:柔性超声换能器、制作方法及全光超声发射与检测方法
3. 国家发明专利,授权号:201811561949.3,名称:光纤法布里-玻罗氢气传感器、制作方法及其检测方法
4. 国家发明专利,授权号:201510193456.9,名称:相位解调器、光纤声压解调系统、解调方法及制造方法
5. 国家发明专利,授权号:201410206090.X, 名称:谐振式法布里-珀罗光纤传感器及制造和气压检测方法