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Diffraction-limited optical focusing with arbitrarily oriented magnetic field

机译:衍射限制光学聚焦,具有任意取向磁场

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摘要

In this paper, an approach to create diffraction-limited optical focal spots with arbitrarily oriented magnetic dipolar field components in 4Pi microscopy configuration is proposed. This is achieved by focusing two counter-propagating modulated vector beams consisting of complex intensity and polarization distribution. Through combining the magnetic dipole radiation pattern and the Richards-Wolf vectorial diffraction method, the required illuminations at the pupil plane of a 4Pi focusing configuration for the reconstruction of magnetic dipole focal field are found analytically. Furthermore, the orientation of the doughnut shape focal field can be rotated arbitrarily by modulating the pupil field distribution carefully. As an extension, a three-dimensional optical bubble encloses a transverse spin magnetic field can be obtained by introducing a second magnetic dipole oriented in the orthogonal plane with appropriate amplitude and phase differences.
机译:在本文中,提出了一种在4PI显微镜结构中产生具有任意取向的磁性双极场分量的衍射限制的光学焦点的方法。 这是通过聚焦由复杂强度和偏振分布组成的两个反向传播的调制矢量光束来实现的。 通过组合磁性偶极辐射图案和理查兹 - 狼矢量衍射方法,在分析地发现了用于重建磁偶极焦场的4PI聚焦配置的瞳孔平面所需的照明。 此外,通过仔细调节瞳孔场分布,可以任意地旋转甜甜圈形状焦距的定向。 作为延伸,通过在具有适当的幅度和相位差的正交平面中引入定向的第二磁性偶极子可以获得横向旋转磁场的三维光学气泡包围。

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