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个人简介

崔艳霞,博士,教授,硕士生导师。2006年毕业于南京理工大学,获得工学学士学位;2011年毕业于浙江大学光电系,获得工学博士学位;同年起在太原理工大学物理与光电工程学院任职。2013年7月特殊破格晋升教授。曾于2008年赴香港中文大学进行为期三个月的交流访问,2009年赴美国伊利诺伊大学香槟分校Nicholas X. Fang教授小组进行为期15个月的交流访问,2013年赴香港浸会大学朱福荣教授小组进行为期2个月的交流访问。主持国家自然科学基金委员会资助项目及多项省部级项目。2013年,荣获“香江学者”、“山西省优秀青年学术带头人”、“山西省131工程优秀中青年拔尖创新人才”。截止2013年底,已发表SCI论文19篇,共被引用近200次。美国光学学会会员,担任顶级国际学术期刊(如Optics Letters, Optics Express, Plasmonics)的审稿人。

研究领域

主要从事表面等离子体微纳光子材料与器件,表面等离子体技术提高太阳能电池的转换效率以及发光二极管的出射效率等研究。

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

X. Tian, W. Wang, Y. Hao*, Y. Lin,Y. Cui, Y. Zhang, H.Wang, B.Wei, and B. Xu, "Omnidirectional and polarization-insensitive light absorption enhancement in an organic photovoltaic device using a one-dimensional nanograting,"Journal of Modern Opticsto be published (2014). W. Wang, Y. Hao*,Y. Cui*, X. Tian, Y. Zhang, H. Wang, F. Shi, B. Wei, and Wei Huang, "High-efficiency, broad-band and wide-angle optical absorption in ultra-thin organic photovoltaic devices,"Optics Express22, A376-A385 (2014). [SCI 2区] W. Wang,Y. Cui*, Y. He, Y. Hao*, Y. Lin, X. Tian, T. Ji, S. He, “Efficient multiband absorber based on 1D periodic metal-dielectric photonic crystal with a reflective substrate,”Optics Letters39(2), 331-334 (2014). [SCI 2区] G. Li*,Y. Cui, and J. Wang, “Photorefractive inhibition of second harmonic generation in periodically poled MgO doped LiNbO3waveguide,”Optics Express19(21), 21790 (2013). [SCI 2区] Y. Li, Y. Hao*, W. Li, S. Yuan, H. Liu,Y. Cui, H. Wang, B. Xu, and W. Huang “Improving working lifetime and efficiency of phosphor doped organic light-emitting diodes,”Optics Express14(21), 17020 (2013). [SCI 2区] T. Ji*, L. Peng, Z. Fang*,Y. Cui, Y. Hao, “Band offsets of Er2O3films grown on Ge substrates by X-ray photoelectron spectroscopy,”Applied Physics A09478396 (2013). [SCI 4区] Y. Cui*, J. Xu, Y. Lin, G. Li, Y. Hao, S. He, and N. X. Fang, “Optical curtain effect: extraordinary optical transmission enhanced by antireflection,”Plasmonics, 8(2), 1087-1093 (2013). [SCI 1区,影响因子3.7] Y. Cui, K. H. Fung, J. Xu, H. Ma, Yi Jin, S. He, and N. X. Fang*, “Ultra-broadband light absorption by a sawtooth anisotropic metamaterial slab,”Nano Letters12 (3), 1443 (2012). [SCI 1区,影响因子12.9,引用频次32,被MIT News, Science & Technology News, Laser Focus World等多家杂志报道] Y. Cui*, K. H. Fung, J. Xu, S. He, and N. X. Fang, “Multiband plasmonic absorber based on transverse phase resonances,”Optics Express20(16), 17552-17559 (2012). [SCI 2区] F. Ding,Y. Cui, X. Ge, Y. Jin, and S. He*, “Ultra-broadband microwave metamaterial absorber,”Applied Physics Letters100(10), 103506 (2012). [SCI 2区] Y. Cui, J. Xu, K. H. Fung, Y. Jin*, A. Kumar, S. He, and N. X. Fang*, “A thin Film broadband absorber based on multi-sized nanoantennas,”Applied Physics Letters99, 253101 (2011). [SCI 2区] Y. Cui, K. H. Fung, J. Xu, Y. Jin, S. He, and N. X. Fang*, “Exciting multiple plasmonic resonances by a double-layered metallic nanostructure,”Journal of Optical Society of America B28(11), 2827 (2011). [SCI 3区] Q. Liu,Y. Cui, D. Gardner, X. Li, S. He, and I. I. Smalyukh*, “Self-alignment of plasmonic gold nanorods in reconfigurable anisotropic fluids for tunable bulk metamaterial applications,”Nano Letters10, 1347 (2010). [SCI 1区,影响因子12.9] Y. Cui, J. Xu, S. He, and N. X. Fang*, “Plasmon-assisted optical curtains,”Plasmonics5(4), 369 (2010). [SCI 1区] Z. Zhang, K. T. Chan*,Y. Cui, S. He, C. Wang, Q. Xing, and Q. Wang, “Multimode transmission in complementary plasmonic structures at terahertz frequencies,”Applied Physics Letters96, 073506 (2010). [SCI 2区] Y. Cuiand S. He*, “Enhancing extraordinary transmission of light through a metallic nano-slit with a nano cavity antenna,”Optics Letters34, 16 (2009). [SCI 2区] Y. Cuiand S. He*, “A theoretical re-examination of giant transmission of light through a metallic nano-slit surrounded with periodic grooves,”Optics Express17, 13995 (2009). [SCI 2区] S. He*,Y. Cui, Y. Ye, P. Zhang, and Y. Jin, “Optical nanoantennas and metamaterials,”Materials Today12, 16 (2009). [SCI 1区] Y. Cui, J. Hu*, and S. He, “Nanocavity antenna array assisted enhancing extraordinary optical transmission of light through a metallic nanoslit,”Journal of Optical Society of America B26, 2131 (2009). [SCI 3区]

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