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Generation of ultra-long pure magnetization needle and multiple spots by phase modulated doughnut Gaussian beam

机译:通过相位调制的甜甜圈高斯梁产生超长纯磁化针和多个斑点

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摘要

Based on vector diffraction theory and inverse Faraday effect (IFE), the light induced magnetization distribution of a tightly focused azimuthally polarized doughnut Gaussian beam superimposed with a helical phase and modulated by an optimized multi belt complex phase filter (MBCPF) is analysed numerically. It is noted that by adjusting the radii of different rings of the complex phase filter, one can achieve many novel magnetization focal distribution such as sub wavelength scale (0.29 lambda) and super long (52.27) longitudinal magnetic probe suitable for all optical magnetic recording and the formation of multiple magnetization chain with four, six and eight sub-wavelength spherical magnetization spots suitable for multiple trapping of magnetic particles are achieved. (C) 2017 Elsevier Ltd. All rights reserved.
机译:基于矢量衍射理论和反向法拉第效应(IFE),在数值上分析了用螺旋相叠加并通过优化的多带复相滤波器(MBCPF)叠加的紧密聚焦方形偏振甜甜圈高斯梁的光引起的磁化分布。 应注意,通过调节复杂相滤波器的不同环的半径,可以实现许多新的磁化焦点分布,例如亚波长刻度(0.29λ)和超长(52.27)纵向磁探头,适用于所有光学磁记录和 实现了具有适合于多个捕获磁性颗粒的四个,六个亚波长球形磁化点的多磁化链的形成。 (c)2017 Elsevier Ltd.保留所有权利。

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