{"id":301,"date":"2021-01-25T15:31:54","date_gmt":"2021-01-25T07:31:54","guid":{"rendered":"http:\/\/111.186.57.67:5986\/wordpress\/?page_id=301"},"modified":"2025-09-12T14:19:44","modified_gmt":"2025-09-12T06:19:44","slug":"xinyufan","status":"publish","type":"page","link":"http:\/\/cip.sjtu.edu.cn\/wordpress\/index.php\/team\/teacher\/xinyufan","title":{"rendered":"\u6a0a\u6615\u6631"},"content":{"rendered":"<div class=\"post-content\">\n<div class=\"wp-block-columns\">\n<div class=\"wp-block-column\">\n<figure class=\"wp-block-image size-large is-resized\"><img src=\"http:\/\/cip.sjtu.edu.cn\/wordpress\/wp-content\/uploads\/2021\/01\/\u6a0a\u6615\u6631.jpg\" alt=\"\" class=\"wp-image-278\" width=\"400\" srcset=\"http:\/\/cip.sjtu.edu.cn\/wordpress\/wp-content\/uploads\/2021\/01\/\u6a0a\u6615\u6631.jpg 800w, http:\/\/cip.sjtu.edu.cn\/wordpress\/wp-content\/uploads\/2021\/01\/\u6a0a\u6615\u6631-240x300.jpg 240w, 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style=\"font-size:18px\"><li>\u7535\u5149\u8c03\u5236\u53cc\u5149\u68b3<\/li><li>\u6df7\u5408\u53cc\u5149\u68b3\u7cfb\u7edf<\/li><li>\u4e2d\u7ea2\u5916\u53cc\u5149\u68b3\u7cfb\u7edf<\/li><\/ul>\n\n\n\n<h2>\u83b7\u5956\u60c5\u51b5<\/h2>\n\n\n\n<ul style=\"font-size:18px\"><li>\u81f4\u8fdc\u8363\u8a89\u535a\u58eb\uff0c\u8881\u5ce5\u8d85\u535a\u58eb\uff0c2025\u5e74<\/li><li>\u535a\u58eb\u540e\u521b\u65b0\u4eba\u624d\u652f\u6301\u8ba1\u5212\uff0c\u4e07\u9633\u9633\u535a\u58eb\uff0c2024\u5e74<\/li><li>\u4e9a\u6d32\u901a\u4fe1\u4e0e\u5149\u5b50\u5b66\u56fd\u9645\u4f1a\u8bae\uff08ACP2024\uff09\u6700\u4f73\u5f20\u8d34\u8bba\u6587\u5956\uff0c\u6731\u4ee5\u5f85\u535a\u58eb\uff0c2024\u5e74<\/li><li>\u4e2d\u56fd\u7535\u5b50\u6559\u80b2\u5b66\u4f1a\u4f18\u535a\u6307\u5bfc\u6559\u5e08\u5956\uff0c\u738b\u5f6c\u535a\u58eb\u8bba\u6587\u201c\u57fa\u4e8e\u5149\u7ea4\u80cc\u5411\u6563\u5c04\u7684\u9ad8\u7a7a\u95f4\u5206\u8fa8\u7387\u5206\u5e03\u5f0f\u5149\u7ea4\u4f20\u611f\u6280\u672f\u7814\u7a76\u201d\uff0c2020\u5e74<\/li><li>\u4e0a\u6d77\u4ea4\u901a\u5927\u5b66\u4f18\u535a\u63d0\u540d\uff0c\u738b\u5f6c\u535a\u58eb\u8bba\u6587\u201c\u57fa\u4e8e\u5149\u7ea4\u80cc\u5411\u6563\u5c04\u7684\u9ad8\u7a7a\u95f4\u5206\u8fa8\u7387\u5206\u5e03\u5f0f\u5149\u7ea4\u4f20\u611f\u6280\u672f\u7814\u7a76\u201d\uff0c2020\u5e74<\/li><li>\u5168\u56fd\u5149\u5b50\u6280\u672f\u8bba\u575b\u4f18\u79c0\u53e3\u5934\u62a5\u544a\u5956\uff0c\u4e07\u9633\u9633\u535a\u58eb\uff0c2020\u5e74<\/li><li>\u4e0a\u6d77\u4ea4\u901a\u5927\u5b66\u4f18\u535a\uff0c\u6c6a\u5e05\u535a\u58eb\u8bba\u6587\u201c\u53cc\u5149\u68b3\u5e72\u6d89\u4eea\u53ca\u5176\u5e94\u7528\u7814\u7a76\u201d\uff0c2019\u5e74<\/li><li>\u4e9a\u6d32\u901a\u4fe1\u4e0e\u5149\u5b50\u5b66\u56fd\u9645\u4f1a\u8bae\uff08ACP2019\uff09\u6700\u4f73\u5b66\u751f\u8bba\u6587\u5956\uff0c\u738b\u5f6c\u535a\u58eb\uff0c2019\u5e74<\/li><li>APOS2018\u56fd\u9645\u4f1a\u8baeBest Student Paper Award\uff0c\u5f20\u7167\u9e4f\u535a\u58eb\uff0c2018\u5e74<\/li><li>APOS2018\u56fd\u9645\u4f1a\u8baeBest Student Paper Award\uff0c\u6234\u9ad8\u5b87\u7855\u58eb\uff0c2018\u5e74<\/li><li>\u4e2d\u56fd\u5149\u7ea4\u4f20\u611f\u5b66\u672f\u4f1a\u8bae\u4f18\u79c0\u5b66\u672f\u5956\uff0c\u6c6a\u5e05\u535a\u58eb\uff0c2017\u5e74<\/li><li>APOS2016\u56fd\u9645\u4f1a\u8baeBest Student Paper Award\uff0c\u6c6a\u5e05\u535a\u58eb\uff0c2016\u5e74<\/li><\/ul>\n\n\n\n<h2>\u8457\u4f5c\u53ca\u7279\u9080\u8bba\u6587<\/h2>\n\n\n\n<ul style=\"font-size:18px\"><li>Xinyu Fan, \u201cDistributed Rayleigh Sensing\u201d, Book Chapter in \u201cHandbook of optical fibers\u201d (Springer Nature, 2018)<\/li><li>Bin Wang, Xinyu Fan*, Yuanxiu Fu, Zuyuan He, \u201cDynamic strain measurements based on high-speed single-end-access Brillouin optical correlation domain analysis,\u201d OSA\/IEEE Journal of Lightwave Technology, Vol. 37, Issue 11, Nov. 2019\uff08\u7279\u9080\u8bba\u6587\uff09<\/li><li>Xinyu Fan, Guangyao Yang, Shuai Wang, Qingwen Liu, and Zuyuan He, \u201cDistributed Fiber-Optic Vibration Sensing Based on Phase Extraction from Optical Reflectometry,\u201dOSA\/IEEE Journal of Lightwave Technology, Vol. 35, Issue 6, Aug. 2017 (\u7279\u9080\u8bba\u6587)<\/li><\/ul>\n\n\n\n<h2>\u8fd1\u4e94\u5e74\u91cd\u8981\u671f\u520a\u8bba\u6587\uff08\u7b2c\u4e00\u4f5c\u8005\/\u901a\u4fe1\u4f5c\u8005\uff0c\u66f4\u65b0\u81f32025.9\uff09<\/h2>\n\n\n\n<ul style=\"font-size:18px\"><li>Yangyang Wan, Ziwen Long, Xinyu Fan*, Zuyuan He, \u201cScan-less speckle encoded single-pixel imaging over giga-pixels per second assisted by dual optical frequency combs,\u201d <strong>Laser &amp; Photonics Review<\/strong>, 2025 (accepted).<\/li><li>Yidai Zhu, Xinyu Fan*, Yangyang Wan, Sizhe Zhang, Zuyuan He, \u201cHigh-precision distributed magnetic field sensing using polarization-sensitive TGD-OFDR based on quaternion analysis,\u201d Optics Letters, Vol. 50, No. 18, pp.5574-5577, September 2025.<\/li><li>Zhengchao Yuan, Xinyu Fan*, Bingxin Xu, Zuyuan He, \u201cHigh-resolution mid-infrared dual electro-optic comb interferometer based on spectral interleaving,\u201d Chinese Optics Letters, Vol. 23, No. 9, 093001, September 2025.<\/li><li>Yidai Zhu, Xinyu Fan*, Yangyang Wan, Zuyuan He, \u201cHigh-accuracy distributed forward state-of-polarization reconstruction in optical fibers enabled by polarization sensitive optical frequency domain reflectometry,\u201d Chinese Optics Letters, Vol. 23, No. 9, 091201, September 2025.<\/li><li>Zhengchao Yuan, Xinyu Fan*, Peiyuan Sun, Yangyang Wan, Bingxin Xu, Zuyuan He, \u201cNon-ambiguous microwave frequency measurement system assisted by triple electro-optic frequency combs,\u201d IEEE Photonics Technology Letters, Vol. 37, No. 14, pp. 749-752, July 2025.<\/li><li>Qianyu Zhou, Yangyang Wan*, Xinyu Fan*, Zuyuan He, \u201cAll-fiber high-resolution computational spectropolarimeter based on speckle pattern,\u201d Chinese Optics Letters, Vol. 22, No. 12, 123001, December 2024.<\/li><li>Chaozhu Liu, Xinyu Fan*, Lin Ma, Zuyuan He, \u201cUltrasonic Lamb wave detection using a fiber-optic quasi-distributed acoustic sensing system,\u201d Optics Letters, Vol. 49, No. 20, pp.5842-5845, October 2024.<\/li><li>Zhengchao Yuan, Xinyu Fan*, Bingxin Xu, Yidai Zhu, Zuyuan He, \u201cDigitally generated high-resolution mid-infrared dual comb spectroscopy system based on electro-optic modulation,\u201d Optics Letters, Vol. 49, No. 20, pp.5711-5714, October 2024.<\/li><li>Linjing Huang, Xinyu Fan*, Chaozhu Liu, Zuyuan He, \u201cNon-step-scanning Rayleigh-Brillouin Distributed fiber-optic sensing system utilizing double sideband,\u201d OSA\/IEEE Journal of Lightwave Technology, Vol. 42, No. 18, pp. 6213-6218, September 2024.<\/li><li>Ziwen Long, Zhengchao Yuan, Xinyu Fan*, Zuyuan He, \u201cHyperspectral digital holography realized by using electro-optic frequency comb via injection locking,\u201d Optics Letters, Vol. 49, No. 6, pp.1516-1519, March 2024.<\/li><li>Bingxin Xu, Yangyang Wan, Xinyu Fan*, Zuyuan He, \u201cWhispering-gallery-mode barcode-based broadband sub-femtometer-resolution spectroscopy with an electro-optic frequency comb,\u201d <strong>Advanced Photonics<\/strong>, Vol. 6, No. 1, 016006, February 2024.<\/li><li>Yidai Zhu, Xinyu Fan*, Zhaopeng Zhang, Zhengchao Yuan, Bingxin Xu, and Zuyuan He, \u201cOptical frequency domain reflectometry with broadened frequency sweep range assisted by a dual electro-optic frequency comb,\u201d Optics Letters, Vol. 48, No. 19, pp. 4937-4940, October 2023.<\/li><li>Linjing Huang, Xinyu Fan*, and Zuyuan He, \u201cScanning-free hybrid Rayleigh\u2013Brillouin distributed fiber-optic sensing system,\u201d Optics Letters, Vol. 48, No. 17, pp. 4629-4632, September 2023.<\/li><li>Linjing Huang, Xinyu Fan*, Haijun He, Lianshan Yan, and Zuyuan He, \u201cSingle-end hybrid Rayleigh Brillouin and Raman distributed fibre-optic sensing system,\u201d <strong>Light: Advanced Manufacturing<\/strong>, Vol. 4, No. 2, 16, July 2023.<\/li><li>Linjing Huang, Xinyu Fan*, and Zuyuan He, \u201cHybrid distributed fiber-optic sensing system by using Rayleigh backscattering lightwave as probe of stimulated Brillouin scattering,\u201d OSA\/IEEE Journal of Lightwave Technology, Vol. 41, No. 13, pp. 4374-4380, July 2023.<\/li><li>Yangyang Wan, Xinyu Fan*, Bingxin Xu, and Zuyuan He, \u201cReconstructive spectrum analyzer with high-resolution and large-bandwidth using physical-model and data-driven model combined neural network,\u201d <strong>Laser &amp; Photonics Reviews<\/strong>, Vol. 17, No. 7, 2201018, July 2023.<\/li><li>Linjing Huang, Zuyuan He, and Xinyu Fan*, \u201cSimplified single-end Rayleigh and Brillouin hybrid distributed fiber-optic sensing system,\u201d Science China Information Sciences, Vol. 66, No. 2, 129404, February 2023.<\/li><li>Bingxin Xu, Xinyu Fan*, Shuai Wang, and Zuyuan He, &#8220;Sub-femtometer-resolution absolute spectroscopy with sweeping electro-optic combs,&#8221; <strong>Opto-Electronic Advances<\/strong>, Vol. 5, No. 12, 210023, December 2022.<\/li><li>Yangyang Wan, Xinyu Fan*, Bingxin Xu, and Zuyuan He, \u201cMicrowave frequency measurement with high accuracy and wide bandwidth based on whispering-gallery mode barcode,\u201d Optics Letters, Vol. 46, No. 19, pp. 5008 \u2013 5011, October 2021.<\/li><li>Xinyu Fan*, Bin Wang, Guangyao Yang, Zuyuan He, \u201cSlope-assisted Brillouin-based Distributed Fiber-optic Sensing Techniques, Advanced Devices &amp; Instrumentation, Vol. 2021, 9756875, July 2021.<\/li><li>Yangyang Wan, Xinyu Fan*, Zuyuan He*, \u201cReview on speckle-based spectrum analyzer,\u201d Photonic Sensors, Vol. 11, No. 2, pp. 187 \u2012 202, June 2021.<\/li><li>Bingxin Xu, Xinyu Fan*, Shuai Wang, and Zuyuan He, &#8220;Wideband and high-resolution spectroscopy based on an ultra-fine electro-optic frequency comb with seed lightwave selection via injection locking,&#8221; Optics Letters, Vol. 46, No. 8, pp. 1876-1879, April 2021.<\/li><li>Yangyang Wan, Xinyu Fan*, Shuai Wang, Zhaopeng Zhang, Shuangxiang Zhao, Zuyuan He*, \u201cWavemeter capable of simultaneously achieving ultra-high resolution and broad bandwidth by using Rayleigh speckle from single mode fiber,\u201d Journal of Lightwave Technology, Vol. 39, No. 7, pp. 2223 \u2013 2229, April 2021.<\/li><li>Yangyang Wan, Xinyu Fan*, Shuai Wang, Zhaopeng Zhang, Bingxin Xu, and Zuyuan He, \u201cRayleigh speckle-based wavemeter with high dynamic range and fast reference speckle establishment process assisted by optical frequency combs,\u201d Optics Letters\uff0cVol. 46, No. 6, pp. 1241-1244, March 2021.<\/li><li>Mengshi Wu, Xinyu Fan*, Xinpu Zhang, Lianshan Yan, and Zuyuan He, \u201cFrequency response enhancement of phase-sensitive OTDR for interrogating weak reflector array by using OFDM and Vernier effect,\u201d OSA\/IEEE Journal of Lightwave Technology, Vol. 38, No.17, pp. 4874-4882, September 2020.<\/li><li>Zhaopeng Zhang, Xinyu Fan*, Shuai Wang, Shuangxiang Zhao, Bin Wang, Yangyang Wan, Zuyuan He, \u201cA novel wavemeter with 64 attometer spectral resolution based on Rayleigh speckle obtained from single-mode fiber,\u201d OSA\/IEEE Journal of Lightwave Technology, Vol. 38, No. 16, pp. 4548-4554, August 2020.<\/li><li>Mengshi Wu, Chi Li, Xinyu Fan*, Changrui Liao*, and Zuyuan He, &#8220;Large-scale multiplexed weak reflector array for fiber optic distributed acoustic sensor system,&#8221; Optics Letters\uff0cVol. 45, No. 13, pp. 3685-3688, July 2020.<\/li><li>Bingxin Xu, Xinyu Fan*, Shuai Wang, Zuyuan He, \u201cGeneralized linear optical sampling technique realized by using non-pulse electro-optic frequency comb sampling source,\u201d IEEE Access, Vol. 8, pp. 114259-114265, July 2020.<\/li><li>Zhaopeng Zhang, Xinyu Fan*, Zuyuan He, \u201cLong-range and wide-band vibration sensing by using phase-sensitive OFDR to interrogate weak reflector array,\u201d Optics Express, Vol. 28, No. 12, pp. 18387-18396, June 2020.<\/li><li>Yangyang Wan, Shuai Wang, Xinyu Fan*, Zhaopeng Zhang, and Zuyuan He, \u201cHigh-resolution wavemeter using Rayleigh speckle obtained by optical time domain reflectometry,\u201d Optics Letters\uff0cVol. 45, No. 4, pp. 799-802, February 2020.<\/li><li>Mengshi Wu, Xinyu Fan*, Qingwen Liu, and Zuyuan He, \u201cQuasi-distributed fiber-optic acoustic sensing system based on pulse compression technique and phase-noise compensation,\u201d Optics Letters\uff0cVol. 44, No. 24, pp. 5969-5972, December 2019.<\/li><li>Zhaopeng Zhang, Xinyu Fan*, and Zuyuan He, &#8220;Long-range distributed static strain sensing with &lt;100 nano-strain resolution realized using OFDR,&#8221; OSA\/IEEE Journal of Lightwave Technology, Vol. 37, No. 18, pp. 4590 &#8211; 4596, September 2019.<\/li><li>Bin Wang, Xinyu Fan*, Yuanxiu Fu, Zuyuan He, &#8220;Distributed dynamic strain measurement based on dual-slope-assisted Brillouin optical correlation domain analysis,&#8221; OSA\/IEEE Journal of Lightwave Technology, Vol. 37, No. 18, pp. 4573 &#8211; 4583, September 2019.<\/li><li>Bin Wang, Xinyu Fan*, Shuai Wang, Zuyuan He, &#8220;Phase-dispersion spectroscopy with high spectral resolution using a wideband ultra-linearly swept optical source,&#8221; OSA\/IEEE Journal of Lightwave Technology, Vol. 37, No. 13, pp. 3127-3137, July 2019.<\/li><li>Zhaopeng Zhang, Xinyu Fan*, Mengshi Wu, and Zuyuan He, \u201cPhase-noise-compensated OFDR realized using hardware-adaptive algorithm for real-time processing,\u201d OSA\/IEEE Journal of Lightwave Technology, Vol. 37, No. 11, pp. 2634-2640, June 2019.<\/li><li>Bin Wang, Xinyu Fan*, Yuanxiu Fu, and Zuyuan He, \u201cDynamic strain measurements based on high-speed single-end-access Brillouin optical correlation domain analysis (Invited),\u201d OSA\/IEEE Journal of Lightwave Technology, Vol. 37, No. 11, pp. 2557-2567, June 2019.<\/li><li>Bingxin Xu, Xinyu Fan*, Shuai Wang, and Zuyuan He, \u201cBroadband and high-resolution electro-optic dual-comb interferometer with frequency agility,\u201d Optics Express, Vol. 27, No. 6, pp. 9266-9275, March 2019.<\/li><li>Bin Wang, Xinyu Fan*, Yuanxiu Fu, and Zuyuan He, \u201cEnhancement of Strain\/Temperature Measurement Range and Spatial Resolution in Brillouin Optical Correlation Domain Analysis Based on Convexity Extraction Algorithm,\u201d IEEE Access, Vol. 7, pp. 32128-32136, March 2019.<\/li><li>Shuai Wang, Xinyu Fan*, Bingxin Xu, and Zuyuan He, \u201cFast MHz spectral-resolution dual-comb spectroscopy with electro-optic modulators,\u201d Optics Letters, Vol. 44, No. 1, pp. 65-68, January 2019.<\/li><li>Guangyao Yang, Xinyu Fan*, Bin Wang, and Zuyuan He, \u201cEnhancing strain dynamic range of slope-assisted BOTDA by manipulating Brillouin gain spectrum shape,\u201d Optics Express, Vol. 26, No. 25, pp. 32599-32607, December 2018.<\/li><li>Shuai Wang, Xinyu Fan*, Binxing Xu, Bin Wang, Jingbing Du, and Zuyuan He, \u201cHybrid Dual-Comb Interferometer with Easily Established Mutual Coherence and Very High Refresh Rate,\u201d Optics Letters, Vol. 43, No. 14, pp. 3441-3444, July 2018.<\/li><li>Mengshi Wu, Xinyu Fan*, Qingwen Liu, Zuyuan He, \u201cHighly Sensitive Quasi-distributed Fiber-optic Acoustic Sensing System by Interrogating a Weak Reflector Array,\u201d Optics Letters, Vol. 43, No. 15, pp. 3594-3597, July 2018.<\/li><li>Bin Wang, Xinyu Fan*, Yuanxiu Fu, Zuyuan He, \u201cDynamic strain measurement with kHz-level repetition rate and centimeter-level spatial resolution based on Brillouin opticalcorrelation domain analysis, \u201d Optics Express, Vo. 26, No. 6, p.6916, March 2018.<\/li><li>Guangyao Yang, Xinyu Fan*, Qingwen Liu, Zuyuan He, \u201cFrequency response enhancement of direct-detection phase-sensitive OTDR by using frequency division multiplexing,\u201d OSA\/IEEE Journal of Lightwave Technology, Vol. 36, No. 4, p.1197, February 2018.<\/li><li>Shuai Wang, Bingxin Xu, Xinyu Fan*, Zuyuan He, \u201cLinear optical samplingtechnique for simultaneously characterizing WDM signals with a single receiving channel, \u201d Optics Express, Vol. 26, No. 2, : p. 2089, January 2018.<\/li><\/ul>\n<\/div>","protected":false},"excerpt":{"rendered":"<p>\u6a0a\u6615\u6631 \u804c\u79f0\uff1a\u957f\u8058\u6559\u6388 \u4e13\u4e1a\uff1a\u4fe1\u606f\u4e0e\u901a\u4fe1\u5de5\u7a0b \u90ae\u7bb1\uff1afan.<a href=\"http:\/\/cip.sjtu.edu.cn\/wordpress\/index.php\/team\/teacher\/xinyufan\" class=\"gutenlearn-readmore\">\u66f4\u591a<i class=\"fa fa-long-arrow-right\" 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