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哈爾濱工程大學(xué)理學(xué)院物理學(xué)研究生導(dǎo)師劉雙強介紹如下:
姓名:劉雙強
部門:理學(xué)院
學(xué)科:物理學(xué)
職稱:副教授
指導(dǎo)資格:碩士生導(dǎo)師
電話:18724638131
郵箱:liukunwu@hrbeu.edu.cn
郵編:150080
地址: 哈爾濱工程大學(xué)理學(xué)樓412
個人簡介
劉雙強,1985年8月出生,博士,光學(xué)工程專業(yè)碩士生導(dǎo)師。
教育經(jīng)歷
2002.9-2006.7 哈爾濱工業(yè)大學(xué)航天學(xué)院電子科學(xué)與技術(shù) 學(xué)士
2006.9-2008.7 哈爾濱工業(yè)大學(xué)航天學(xué)院物理電子學(xué) 碩士
2008.9-2011.11 哈爾濱工業(yè)大學(xué)航天學(xué)院物理電子學(xué) 博士
工作經(jīng)歷
2011.11-2013.11 哈爾濱工程大學(xué)儀器科學(xué)與技術(shù)博士后流動站 博士后
2014.8-2015.8 美國加州大學(xué)伯克利分校 訪問學(xué)者
2011.11至今 哈爾濱工程大學(xué)理學(xué)院 教師
研究方向
量子光學(xué)/原子物理學(xué)/光纖微結(jié)構(gòu)傳感器/光纖微結(jié)構(gòu)激光器
承擔(dān)項目
主持的科研項目:
1、國家自然科學(xué)基金青年基金,快響應(yīng)可調(diào)諧超窄帶原子光學(xué)濾波器研究,2014.1-2016.12,30萬元,已結(jié)題。
2、中國博士后基金特別資助,原子光學(xué)濾波器小型化及穩(wěn)頻技術(shù)研究,2018.1-2018.12,15萬元,在研。
3、黑龍江省自然科學(xué)基金面上項目,基于自旋交互泵浦技術(shù)的原子光學(xué)濾波技術(shù)研究,2018.7-2021.6,6萬元,在研。
4、哈爾濱市科技創(chuàng)新人才留學(xué)回國人員創(chuàng)業(yè)類, 高精度弱磁探測原子磁力儀研制,2017.9-2018.12,15萬元,在研。
5、中國博士后基金面上項目,基于自旋交互泵浦技術(shù)的原子濾光器研究,2017.5-2018.12,5萬元,在研。
6、教育部博士點基金新教師類,原子磁力儀靈敏度的提高方法研究,2013.1-2015.12,4萬元,已結(jié)題。
7、中國博士后基金面上項目,基于激光感生各向異性的原子光學(xué)濾波器研究,2013.1-2013.12,5萬元,已結(jié)題。
8、黑龍江省博士后基金,高靈敏度心磁測量技術(shù)研究,2013.1- 2013.12,2萬元,已結(jié)題。
9、黑龍江省博士后科研啟動金,矢量原子磁力儀小型化研究,2016.1-2017.12,10萬元,已結(jié)題。
參與的科研項目:
1、國家自然科學(xué)基金面上項目,用磁場效應(yīng)控制光的群速度,2011.1-2013.12,35萬元,已結(jié)題。
2、國家自然科學(xué)基金青年基金,強色散耦合諧振腔感應(yīng)透明結(jié)構(gòu)的傳感特性研究,2014.1-2016.12,30萬元,已結(jié)題。
3、國防863計劃,某磁力儀的研究,2012.1-2013.12,已結(jié)題。
招生信息
招收碩士研究生和本科生,研究方向為原子磁力儀/原子光學(xué)濾波器/光纖磁場傳感器等
本科生授課課程
原子物理 36課時
研究生授課課程
量子光學(xué) 16課時
專利成果
出版著作
1. 工信部“十二五”規(guī)劃教材,《光學(xué)原子磁力儀》,哈爾濱工程大學(xué)出版社,2015年8月出版
發(fā)表論文
以第一作者或通訊發(fā)表的SCI檢索學(xué)術(shù)論文:
[1] Shuangqiang Liu, Bojian Shi, Weimin Sun, Hanyang Li, Jun Yang, Whispering gallery mode resonance transfer in hollow microcavities, Applied Physics Express, In press. (中科院二區(qū),JCR二區(qū),IF=2.555)
[2] Shuangqiang Liu, Yingke Ji, Jun Yang, Weimin Sun, and Hanyang Li, “Nafion film temperature/humidity sensing based on optical fiber Fabry-Perot interference,” Sensors and Actuators A: Physical, 269, 313-321 (2018). (中科院二區(qū),JCR二區(qū),IF=2.311)
[3] Shuangqiang Liu, Bojian Shi, Yan Wang, Lugui Cui, Jun Yang, Weimin Sun, and Hanyang Li, “Whispering gallery modes in a liquid-filled hollow glass microsphere”, Optics Letters, 42(22), 4659-4662 (2017). (中科院二區(qū),JCR一區(qū),IF=3.589,TOP期刊)
[4] Shuangqiang Liu, Yingke Ji, Lugui Cui, Weimin Sun, Jun Yang and Hanyang Li, “Humidity-insensitive temperature sensor based on a quartz capillary anti-resonant reflection optical waveguide”, Optics Express, 25 (16), 18929-18939 (2017). (中科院二區(qū),JCR一區(qū),IF=3.356,TOP期刊)
[5] Shuangqiang Liu, Enming Zhao, Diyou Liu, Hanyang Li, and Weimin Sun, “A tunable atomic line filter without sacrificing transmission based on the combination of selective pump and magnetic field” OPTIK, 148, 244-250 (2017).(中科院四區(qū),JCR三區(qū),IF=1.191)
[6] Zhenyu Zhu, Hanyang Li, Weimin Sun, and Shuangqiang Liu*, “Theoretical model of an atomic line filter based on the combination of a double selective pump”, Applied Optics, 56(1), 78-83 (2017).(中科院三區(qū),JCR三區(qū),IF=1.791)
[7] Shuangqiang Liu, Yundong Zhang, “Incoherent pump assisted atomic filter based on laser induced optical anisotropy”, Applied Optics, 51(30), 7183-7187 (2012). (中科院三區(qū),JCR三區(qū),IF=1.791)
[8] Shuangqiang Liu, Yundong Zhang, Hao Wu, and Ping Yuan, “Ultra-narrow band atomic filter based on optical pumping induced dichroism realized by selectively saturated absorption”, Optics Communications, 285(6), 1181-1184 (2012). (中科院三區(qū),JCR二區(qū),IF=1.887)
[9] Shuangqiang Liu,Yundong Zhang, Daikun Fan, Hao Wu, and Ping Yuan, “The selective optical pumping process in Dopper-broadened atoms,” Applied Optics. 50(11), 1620~1624 (2011). (中科院三區(qū),JCR三區(qū),IF=1.791)
[10] Shuangqiang Liu,Yundong Zhang, Hao Wu, and Ping Yuan, “An atomic filter with large scale tunability,”Journal of the optical society of America B-optical physics, 28(5), 1104~1110 (2011). (中科院三區(qū),JCR二區(qū),IF=2.048)
[11] Shuangqiang Liu, Yundong Zhang, Hao Wu, and Ping Yuan, “Gain assited large-scale tunable atomic filter based on birefringence by double selective optical pumping”, Optics Communications, 284(18), 4180~4184 (2011). (中科院三區(qū),JCR二區(qū),IF=1.887)
合作發(fā)表的SCI檢索學(xué)術(shù)論文
[1] Yan Wang, Liyuan Zhao, Aojie Xu, AJ, Lei Wang, Lingli, Shuangqiang Liu, Yongjun Liu, Hanyang Li, “Detecting enzymatic reactions in penicillinase via liquid crystal microdroplet-based pH sensor,”Sensors and Actuators B-CHEMICAL, 258, 1090-1098 (2018). (中科院一區(qū),JCR一區(qū),IF=5.667, TOP期刊)
[2] Haichao Yu, Hanyang Li, Yan Wang, Lugui Cui, Shuangqiang Liu, and Jun Yang, “Brief review on pulse laser propulsion,”Optics and Laser Technologh, 100, 57-75 (2018). (中科院三區(qū),JCR二區(qū),IF=2.503)
[3] Haichao Yu, Hanyang Li, Lugui Cui, Shuangqiang Liu, and Jun Yang, “Micro-gun based on laser pulse propulsion,”Scientific Reports, 7, 16299 (2017). (中科院三區(qū),JCR一區(qū),IF=4.122).
[4] Hanyang Li, Shuangqiang Liu, Feng Peng, Jun Yang, Jin Li, and Yundong Zhang, “Observation of thermally induced tuning of lasing emission from melamine-formaldehyde resin microspheres,”Japanese Journal of Applied Physics, 56(3), (2017). (中科院三區(qū),JCR二區(qū),IF=1.452).
[5] Liyuan Zhao, Yan Wang, Yonggui Yuan, Yongjun Liu, Shuangqiang Liu, Weimin Sun, Jun Yang, and Hanyang Li, “Whispering gallery mode laser based on cholesteric liquid crystal microdroplets as temperature sensor”, Optics Communications, 402, 181-185 (2017). (中科院三區(qū),JCR二區(qū),IF=1.887)
[6] Yan Wang, Hanyang Li, Liyuan Zhao, Yongjun Liu, Shuangqiang Liu, Jun Yang, “Tapered optical fiber waveguide coupling to whispering gallery modes of liquid crystal microdroplet for thermal sensing application”, Optics Express, 25(2), 918-926 (2017). (中科院二區(qū),JCR一區(qū),IF=3.356,TOP期刊)
[7] Yan Wang, Hanyang Li, Liyan Zhao, Yongjun Liu, Shuangqiang Liu, Jun Yang, “Tunable whispering gallery modes lasing in dye-doped cholesteric liquid crystal microdroplets”, Applied Physics Letters, 109(23), 231906 (2016). (中科院二區(qū),JCR一區(qū),IF=3.495,TOP期刊)
[8] Yan Wang, Hanyang Li, Liyan Zhao, Bing Wu, Shuangqiang Liu, Yongjun Liu, and Jun Yang, “A review of droplet resonators: Operation method and application”, Optics and Laser Technology, 86, 61-68 (2016). (中科院三區(qū),JCR二區(qū),IF=2.503)
[9] Hanyang Li, Yan Wang, Jin Li, Shuangqiang Liu, Jun Yang, “Waveguiding performance of rhodamine 6G doped polymer nanowire”, OPTIK, 127(18), 7268-7273 (2016). (中科院四區(qū),JCR三區(qū),IF=1.191)
[10] Wu Hao, Zhang Yundong, Liu Shuangqiang, Wang Jinfang, Dang Boshi, “Transition of light propagation from slow light to superluminal light in a four-level system,” Journal of the optical society of the America B-optical physics, 27, A93~A98 (2010). (中科院三區(qū),JCR二區(qū),IF=2.048)
[11] Zhusong He, Yundong Zhang, Hao Wu, Ping Yuan, and Shuangqiang Liu. “Theoretical Model for an Atomic Optical Filter Based on Optical Anisotropy.” Journal of the optical society of the America B-optical physics, 26(9), 1755~1759 (2009). (中科院三區(qū),JCR二區(qū),IF=2.048)
[12] Zhusong He, Yundong Zhang, Hao Wu, Ping Yuan, and Shuangqiang Liu. “Theory and Experiment for Atomic Optical Filter Based on Optical Anisotropy in Rubidium.” Optics Communications. 282, 4548~4551 (2009). (中科院三區(qū),JCR二區(qū),IF=1.887)
[13] Zhusong He, Yundong Zhang, Shuangqiang Liu, and Ping Yuan. “Transmission characteristics of an excited-state induced dispersion optical of rubidium at 775.9 nm”. Chinese Optics Letters, 5(5): 252~254 (2007). (中科院三區(qū),JCR二區(qū),IF=1.948)
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