首页> 外文期刊>Applied Physics Letters >Tuning the shape of magneto-optical Kerr spectrum by changing the strip width in one-dimensional Ag-Co-Ag magnetoplasmonic nanogratings
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Tuning the shape of magneto-optical Kerr spectrum by changing the strip width in one-dimensional Ag-Co-Ag magnetoplasmonic nanogratings

机译:通过改变一维Ag-Co-Ag磁体上纳米型纳米型纳米型磁化纳米液体通过改变带材宽度来调整磁光kerr光谱的形状

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摘要

Magnetoplasmonic nanostructures have received significant attention as they have the ability to manipulate the magneto-optical response more precisely and efficiently. Here, we report a method to manipulate the shape of the longitudinal magneto-optical Kerr rotation spectrum in one-dimensional magnetoplasmonic nanogratings. It is found that changing the strip width of the nanograting can alter the sign of the maximal Kerr rotation of the two Kerr spectra. Experimentally, we obtained the maximal Kerr rotation angles of 0.30 degrees and -0.18 degrees at the wavelength of 530nm for strip widths of 200nm and 160nm, respectively, in the Ag/Co/Ag grating sample. It has been revealed that the sign change of the two maximal Kerr angles is attributed to the relative contributions of the dipole-dipole interactions. These findings are of potential values for practical applications of magneto-optical devices.
机译:磁性纳米结构具有显着的关注,因为它们具有更精确有效地操纵磁光响应。这里,我们报告了一种操纵一维磁体上纳米型纳米型纳入纵向磁光kerr旋转谱的形状的方法。结果发现,改变纳米的条形宽度可以改变两个克尔光谱的最大kerr旋转的符号。通过实验,在Ag / Co / Ag光栅样品中,我们在530nm的波长为530nm的波长下获得0.30度和-0.18度的最大kerr旋转角度。已经揭示了两个最大卡尔角的符号变化归因于偶极偶极交互的相对贡献。这些发现是磁光器件实际应用的潜在值。

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