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Generation of sub-wavelength longitudinal magnetic probe and multiple spots using circularly polarized annular multi-Gaussian beam

机译:使用圆极化环形多高斯光束产生亚波长纵向磁探头和多个斑点

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摘要

Abstract Based on vector diffraction theory and inverse Faraday effect, we numerically studied the magnetization induced by a tightly focused circularly polarized annular multi-Gaussian beam. Numerical result shows that the magnetization spot as small as 0.4 λ which extends up to 8 λ can be induced for incident circularly polarized annular multi-Gaussian beam (CPAMGB). We also noted that the depth of focus of the generated magnetization spot can be very well improved up to 48 λ through suitable phase modulation to the incident CPAMGB by means of specially designed complex phase filter. Moreover, we also noted that one can generate a chain of magnetization spots of different numbers and sizes upon suitably changing the beam order of CPAMGB and radii of complex phase filter. We expect that such a study will be fruitful for experimental realization of all-optical magnetic recording, multiple magnetic particle trapping and transportation, confocal and magnetic resonance microscopy, as well as multilayer ultra-high-density magnetic storage.
机译:摘要基于矢量衍射理论和反向法拉第效应,我们在数值上研究了紧密聚焦的圆极化环形多高声梁诱导的磁化。数值结果表明,对于入射的圆偏振的环形梁(CPAMGB),可以诱导延伸到8λ的小于0.4λ的磁化点。我们还注意到,通过专门设计的复杂相滤波器,通过合适的相位调制,所产生的磁化点的焦点可以非常好地提高到48λ。此外,我们还注意到,在适当地改变CPAMGB的光束顺序和复杂相滤波器的半径时,可以产生不同数量的磁化点链和尺寸。我们预期,这种研究将富有成效,用于实验性实现全光磁记录,多个磁性颗粒捕获和输送,共焦和磁共振显微镜以及多层超高密度磁力储存。

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