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Paper Publications
- 2017-11-28
[41] Y. Gong*, M. Zhang, C. Gong, Y. Wu, Y. J. Rao, and X. Fan, Sensitive optofluidic flow rate sensor based on laser heating and microring resonator, Microfluidics & Nanofluidics, 19(6), 1497-1505 (2015)
- 2017-11-28
[42] Y. Gong*, Q. Liu, C. Zhang, Y. Wu, Y. J. Rao, and G. D. Peng, Microfluidic Flow Rate Detection With a Large Dynamic Range by Optical Manipulation, IEEE Photonics Technology Letters, 27(23), 2508 - 2511 (2015)
- 2017-11-28
[43] Y. Gong*, C. Zhang, Q. Liu, Y. Wu, H. Wu, Y. J. Rao, and G. D. Peng, Optofluidic tunable manipulation of microparticles by integrating graded-index fiber taper with a microcavity, Optics Express, 23(3), 3762-3769 (2015)
- 2017-11-28
[44] Y. Wu, B. Yao, Q. Feng, X. Cao, X. Zhou, Y. J. Rao, Y. Gong, W. Zhang, Z. Wang, Y. Chen, K. S. Chiang, Generation of cascaded four-wave-mixing with graphene-coated microfiber, Photonics Research, 3(2), A64-A68 (2015)
- 2017-11-28
[45] Y. Gong*, W. Huang, Q. F. Liu, Y. J. Rao, Y. Wu, Z. N. Wang, J. Y. Lang, K. Zhang, Graded-index optical fiber tweezers with long manipulation length, Optics Express, 22(21), 25267-25276 (2014)
- 2017-11-28
[46] Y. Gong*, C. B. Yu, T. T. Wang, X. P. Liu, Y. Wu, Y. J. Rao, M. L. Zhang, H. J. Wu, X. X. Chen, and G. D. Peng, Highly sensitive force sensor based on optical microfiber asymmetrical Fabry-Perot interferometer, Optics Express, 22(3), 3578-3586 (2014)
- 2017-11-28
[47] X. P. Liu, T. T. Wang, Y. Wu*, Y. Gong*, Y. J. Rao, Dual-Parameter Sensor Based on Tapered FBG Combined With Microfiber Cavity, IEEE Photonics Technology Letters, 26(8), 817-820 (2014)
- 2017-11-28
[48] Y. Gong, A. Y. Ye, Y. Wu, Y. J. Rao, Y. Yao, S. Xiao, Graded-index fiber tip optical tweezers: Numerical simulation and trapping experiment, Optics Express, 21(13), 16181-16190 (2013).
- 2017-11-28
[49] L. Liu, Y. Gong*, Y. Wu, Y. J. Rao, T. Zhao, Spatial Frequency Multiplexing of Fiber-Optic Interferometric Refractive Index Sensors Based on Graded-Index Multimode Fibers, Sensors, 12, 12377-12385 (2012)
- 2017-11-28
[50] Y. Gong*, T. Zhao, Y. J. Rao, Y. Wu, All-Fiber Curvature Sensor Based on Multimode Interference, IEEE Photonics Technology Letters, 23(11), 679-681 (2011)
- 2017-11-28
[51] Y. Wu, T. H. Zhang, Y. J. Rao, and Y. Gong, Miniature interferometric humidity sensors based on silica/polymer microfiber knot resonators, Sensors and Actuators B: Chemical, 155(1), 258-263 (2011)
- 2017-11-28
[52] Y. Gong, T. Zhao, Y. J. Rao, Y. Wu, Y. Guo, A ray-transfer-matrix model for hybrid fiber Fabry-Perot sensor based on graded-index multimode fiber, Optics Express, 18(15), 15844-15852 (2010)
- 2017-11-28
[53] Y. Gong, Y. Guo, Y. J. Rao, T. Zhao, Y. Wu, Fiber-optic Fabry-Perot sensor based on periodic focusing effect of graded-index multimode fibers, IEEE Photonics Technology Letters, 22(23), 1708-1710 (2010)
- 2017-11-28
[54] Y. Gong, Y. J. Rao, Y. Guo, Z. Ran, Y. Wu, Temperature-Insensitive Micro Fabry-Perot Strain Sensor Fabricated by Chemically Etching Er-Doped Fiber, IEEE Photonics Technology Letters, 21(22), 1725-1727 (2009)
- 2017-11-28
[55] Y. Gong, B. C. Li, Y. L. Han, Optical feedback cavity ring-down technique for accurate measurement of ultra-high reflectivity, Applied Physics B, 93(2-3), 355-360 (2008)
- 2017-11-28
[56] Y. Gong, B. C. Li, Ray-transfer-matrix model for accurate pulsed cavity ring-down measurement in the mismatching case, Applied Optics, 47, 3860-3867 (2008)
- 2017-11-28
[57] Y. Gong, B. C. Li, High reflectivity measurement with a broadband diode laser based cavity ring-down technique, Applied Physics B 88, 477-482 (2007)