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1. 中国科学院 研究生院 北京,100039
2. 中国科学院 半导体研究所 北京,100083
3. 中航工业602所,江西 景德镇,333001
4. 中国科学院 电工研究所 北京,100190
收稿日期:2012-03-14,
修回日期:2012-05-17,
网络出版日期:2012-07-10,
纸质出版日期:2012-07-10
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熊尚, 罗雪丰, 韩立. 纯金膜表面等离子增强的旋光效应[J]. 光学精密工程, 2012,20(7): 1525-1531
XIONG Shang, LUO Xue-feng, HAN Li. Plasmon enhanced magneto-optical effect on surface of pure gold film[J]. Editorial Office of Optics and Precision Engineering, 2012,20(7): 1525-1531
熊尚, 罗雪丰, 韩立. 纯金膜表面等离子增强的旋光效应[J]. 光学精密工程, 2012,20(7): 1525-1531 DOI: 10.3788/OPE.20122007.1525.
XIONG Shang, LUO Xue-feng, HAN Li. Plasmon enhanced magneto-optical effect on surface of pure gold film[J]. Editorial Office of Optics and Precision Engineering, 2012,20(7): 1525-1531 DOI: 10.3788/OPE.20122007.1525.
为了研究棱镜的磁光特性对系统光学响应的影响
测试了单个BK7棱镜在全内反射条件下的旋光角度谱以及BK7棱镜与金膜组合构成Kretschmann结构的旋光角度谱
并根据传统光学理论分析了光谱的成因。理论分析结果表明:在单个BK7棱镜构成的全内反射结构中
棱镜底部对p波和s波产生的反射系数差异是导致系统进入全内反射临界角之前产生较强旋光效应的主要原因;在BK7棱镜与金膜组合构成的Kretschmann结构中
棱镜的磁光特性使得光波到达金膜表面之前产生了较小的s光分量
金膜表面等离子共振激发削弱了p光振幅
两种因素结合产生了一种新的表面等离子共振增强磁光效应的物理机制。实验结果表明:Kretschmann模式下
26 nm厚金膜的表面旋光角最大为1.7°
克服了传统磁光克尔效应响应较弱的缺点。
To investigate the influence of Magneto Optical(MO) properties of a prism on systematic optical response
the MO spectra of a single BK7 prism under the condition of total internal reflection was measured
and the spectra of Kretschmann configuration composed of the BK7 prism and a gold film was measured also. Then
based on the framework of traditional optical theory
the reasons of these spectra were analyzed explicitly. The theoretical results show that under conditions of total internal reflection
the Kerr rotation of the single BK7 prism increases significantly before the system gets in the critical angle
and the phenomenon comes from the different reflection coefficients between p and s waves. When the BK7 prism with the gold film is combined to form a standard Kretschmann configuration
a huge enhancement of Kerr rotation appeares at the resonance angle due to the MO capability of BK7 material and the conversion of incident p-polarized wave to surface plasmons. The maximal experimental polar Kerr rotation of the gold film (26 nm) is 1.7?
which overcomes the disadvantage of poor response in the traditional way.
RAETHER H. Surface Plasmons on Smooth and Rough Surfaces and on Gratings [M]. Berlin:Springer Tracts in Modern Physics, 1988.
HOMOLA J, YEE S S, GAUGLITZ G. Surface plasmon resonance sensors:review [J]. Sensors and Actuators B-Chemical, 1999,54(1-2):3-15.
GONZALEZ D J B, GARCIA J M, GARCIA M A, et al.. Plasmon-enhanced magneto-optical activity in ferromagnetic membranes [J]. Applied Physics Letters, 2009,94(26):263101.
LIU Z, SHI L, SHI Z, et al.. Magneto-optical Kerr effect in perpendicularly magnetized Co/Pt films on two-dimensional colloidal crystals [J]. Applied Physics Letters, 2009,95(3):032502.
NIE S M, EMERY S R. Probing single molecules and single nanoparticles by surface-enhanced Raman scattering [J]. Science, 1997,275(5303):1102-1106.
WANG W, LI ZH P, GU B H, et al.. Ag@SiO2 core-shell nanoparticles for probing spatial distribution of electromagnetic field enhancement via surface-enhanced raman scattering [J]. Acs Nano, 2009, 3(11):3493-3496.
LIM S Y, KIM J H, PARK C B, et al.. Gold nanoparticle enlargement coupled with fluorescence quenching for highly sensitive detection of analytes [J]. Langmuir, 2009,25(23):13302-13305.
POMPA P P, MARTIRADONNA L, TORRE A D, et al.. Metal-enhanced fluorescence of colloidal nanocrystals with nanoscale control [J]. Nature Nanotechnology, 2006, 1(2):126-130.
LIU H T, LALANNE P. Microscopic theory of the extraordinary optical transmission [J]. Nature, 2008,452(7188): 728-731.
EBBESEN T W, LEZEC H J, GHAEMI H F, et al.. Extraordinary optical transmission through sub-wavelength hole arrays [J]. Nature, 1998,391(6668):667-669.
GONZALEZ D J B, MARTIN A G, CEBOLLADA A, et al.. Plasmonic Au/Co/Au nanosandwiches with enhanced magneto-optical activity [J]. Small, 2008,4(2):202-205.
RICHARD N, DEREUX A, BOURILLOT T, et al.. Kerr and Faraday rotations of magneto-optical multilayers under the condition of total internal reflection [J]. Physica Status Solidi a-Applied Research, 1999,175(1): 225-232.
ARMELLES G, GONZALEZ D J B, MARTIN G A, et al.. Localized surface plasmon resonance effects on the magneto-optical activity of continuous Au/Co/Au trilayers[J]. Optics Express, 2008, 16(20): 16104-16112.
RICHARD N, DEREUX A, DAVID T, et al.. Magneto-optical effects in multilayers illuminated by total internal reflection [J]. Physical Review B, 1999,59(8): 5936-5944.
VILA E F, SUEIRO X M B, DIAZ G J B, et al.. Surface plasmon resonance effects in the magneto-optical activity of Ag-Co-Ag trilayers [J]. Ieee Transactions on Magnetics, 2008,44(11): 3303-3306.
GONZALEZ D J B, MARTIN G A, ARMELLES G, et al.. Surface-magnetoplasmon nonreciprocity effects in noble-metal/ferromagnetic heterostructures [J]. Physical Review B, 2007,76(15):153402-1-8.
FERREIRO V E, GONZALEZ D, FERMENTO R, et al.. Intertwined magneto-optical and plasmonic effects in Ag/Co/Ag layered structures [J]. Physical Review B, 2009,80(12):125132.
CLAVERO C, YANG K, SKUZA J R, et al.. Magnetic field modulation of intense surface plasmon polaritons [J]. Optics Express, 2010,18(8): 7743-7752.
JAIN P K, YAN H X, WALSWORTH R, et al.. Surface plasmon resonance enhanced magneto-optics (SUPREMO):faraday rotation enhancement in gold-coated iron oxide nanocrystals [J]. Nano Letters, 2009,9(4): 1644-1650.
罗雪丰,韩立. SPR谱仪的研制及在磁光复合薄膜测试中的应用 [J]. 现代科学仪器, 2010, 10(5):52-56. LUO X F, HAN L. Development of angular SPR spectrometer and application in investigation of compound magneto-optical films [J]. Modern Scientific Instument, 2010,10(5): 52-56.(in Chinese)
杨中民. 全光纤传感用磁光玻璃的研究进展 [J]. 中国稀土学报, 2003,21(2):115-122. YANG ZH M. Overview of reaearch on magneto-optical glass applied to all-optical fiber sensor [J].Journal of the Chinese Rare Earth Society, 2003,21(2):115-122. (in Chinese)
LUO X F, HAN L. A universal model of surface plasmon resonance characteristics for isotropic multilayer films . 2010 IEEE Youth Conference on Information, Computing and Telecommunications, 2010:263-266.
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