马 军
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马  军

 

副研究员 硕士生导师

研究方向:光声成像技术,光纤传感技术

电    话:020-85222046   

邮    箱:jun.ma@jnu.edu.cn

地    址:暨南大学曾宪梓科学馆四楼412-2室

 

 

 

马军,男,1987年出生,副研究员,硕士生导师。

       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,加入暨南大学光子技术研究院,任副研究员。

       研究内容主要包括新型光学声波/超声传感器、光声显微镜、光声层析成像等,目前已在《Optics Letters》、《Optics Express》、《Journal of Biomedical Optics》等国际知名学术刊物和会议上发表论文20余篇,申请国家专利1项 

 

代表性论文:

 

1. J. Ma, J. Shi, P. Hai, Y. Zhou, and L. V. Wang, “Grueneisen Relaxation Photoacoustic Microscopy In Vivo,” J. Biomed. Opt. 21, 066005 (2016).

2. J. Ma, Y. Q. Yu, W. Jin, “Universal phase demodulation system with Sagnac loop for diaphragm based acoustic sensor,” Optics Express 23, 29268-29278 (2015).

3. 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).

4. 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).

5. 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). (Top download paper in OSA journals)

6. 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).

7. 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).

8. Y. Yu, W. Zhou, J. Ma, S. Ruan, Y. Zhang, Q. Huang, and X. Chen, “High-Temperature Sensor Based on 45° Tilted Fiber End Fabricated by Femtosecond Laser,” IEEE Photon. Technol. Lett. 28, 653-656 (2016).

9. C. Wang, W. Jin, W. Jin, J. Ju, J. Ma, H. L. Ho, “Evanescent-field photonic microcells and their applications in sensing,” Measurement 79,172-181 (2006).

10. Y. Tan, C. Zhang, W. Jin, F. Yang ; H. L. Ho, and J. Ma, “Optical fiber photoacoustic gas sensor with graphene nano-mechanical resonator as the acoustic detector,” IEEE JSTQE, Issue 99, (2016).

11. T. Gao, S.-W. Ng, X. Liu, L. Niu, Z. Xie, R. Guo, C. Chen, X. Zhou, J. Ma, Y. -S. Chui, W. Jin, W. Zhang, F. Zhou, and Z. Zheng, “Transferable, Transparent and Functional Polymer @ Graphene 2D Objects,” NPG Asia Materials 6, e130 (2014).

12. C. Wang, W. Jin, C. Liao, J. Ma, W. Jin, F. Yang, H. L. Ho, and Y. Wang, “Highly birefringent suspended-core photonic microcells for refractive-index sensing,” Appl. Phys. Lett. 105, 061105 (2014).

13. H. Xuan, J. Ma, W. Jin, and W. Jin, “Polarization Converters in Highly Birefringent Microfibers,” Optics Express 22, 3648-3660 (2014).

14. C. Wang, W. Jin, J. Ma, Y. Wang, H. L. Ho, and X. Shi, “Suspended Core Photonic Microcells for Sensing and Device Applications,” Opt. Lett. 38, 1881-1883 (2013).

15. Y. Cao, W. Jin, H. L. Ho, and J. Ma, “Miniature Fiber-tip Photoacoustic Spectrometer for Trace Gas Detection,” Opt. Lett. 38, 434-436 (2013).

 

会议论文:

 

1. J. Ma, J. Shi, P. Hai, Y. Zhou, and L. V. Wang, “Grueneisen Relaxation Photoacoustic Microscopy In Vivo,” SPIE Photonics West 2016, San Francisco, 13-18 February 2016, paper No. 9708-97 (2016), oral presentation.

2. J. Ma , Yongqin Yu, and Wei Jin, “Sagnac interferometer based stable phase demodulation system for diaphragm based acoustic sensor,” Proc. of the 5th Asia-Pacific Optical Sensors Conference, Jeju, May 20-22, 2015, Proc. of the SPIE, paper No. 96550D (2015).

3. J. Ma, W. Jin, H. L. Ho and C. Wang, “Ferrule-top Nano-mechanical Resonator with Multilayer Graphene Film,” Proc. of the 23rd International Conference on Optical Fiber Sensors, Santander, 2-6 June 2014, Proc. of the SPIE (2014), paper No. 915703 (2014), oral presentation.

4. J. Ma, W. Jin, and H. L. Ho, “A Fiber-tip Fabry-Perot Pressure Sensor with Graphene Diaphragm,” Proc. of the 22nd International Conference on Optical Fiber Sensors, Beijing, 15-19 October 2012, Proc. of the SPIE, paper No. 8421-422 (2012), oral presentation. Best student paper award.

5. J. Ma and W. Jin, “In-fiber Microsphere Air-cavity Fabry-Perot Interferometer for Strain/temperature Measurement,” Proc. of the 22nd International Conference on Optical Fiber Sensors, Beijing, 15-19 October 2012, Proc. of the SPIE, paper No. 8421-321 (2012).

6. J. Ma, W. Jin, and L. Jin, “Temperature Characteristics of Microfiber Long-period-gratings Fabricated by A Femtosecond Infrared Laser,” Proc. of 21st International Conference on Optical Fiber Sensors, Ottawa, 15-19 May 2011, Proc. of SPIE, paper No. 7753-391 (2011).

 

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