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Reduction of the Focal Spot Size in High-Aperture Focusing Systems at Inserting of Aberrations

机译:减小像差插入时在高光圈聚焦系统中的焦点尺寸

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Possibility of control by the contribution of components of vector electric field in focal area by means of transmission functions similar to the wavefront aberration for the purpose of reduction of the cross-section size of the central light spot of focusing system with the high numerical aperture is shown. By analysis of a matrix of polarizing transformation of a high-aperture lens and numerical modeling of focusing system in Debay approach the possibility of reducing the size of the focal spot and shadow area is proved. Efficiency of use Zernike polynomials for formation of a subwavelength central spot is shown: elongate focal spot having full width at half maximum along polarization axis FWHM(-) = 0.24λ is obtained for linearly polarized beam; round focal spot having full width at half maximum FWHM = 0.35λ is obtained for radially polarized beam and FWHM = 0.35λ for circularly polarized beam. For the azimuthal polarization the presence of the first order vortex phase function enables us to obtain the central circular spot in the total intensity. The spot is smaller than the diffraction limit: FWHM = 0.46λ and the intensity in the side lobes is low. A shadow zone with a diameter VD = 0.5λ is formed for radial polarization and with small dark spot in longitudinal component (VDz = 0.44λ) is received.
机译:为了减小具有高数值孔径的聚焦系统的中心光斑的横截面尺寸,可以通过类似于波前像差的传输函数,通过聚焦区域中矢量电场分量的贡献进行控制。如图所示。通过在Debay方法中分析高光阑镜头的偏振变换矩阵和聚焦系统的数值模型,证明减小焦斑和阴影区域的大小的可能性。示出了使用Zernike多项式形成亚波长中心光斑的效率:对于线性偏振光束,获得了沿偏振轴FWHM(-)=0.24λ具有半峰全宽的细长焦点;对于径向偏振光束,可获得半高全宽的圆形焦点;对于圆形偏振光束,可获得FWHM =0.35λ。对于方位极化,一阶涡旋相位函数的存在使我们能够获得总强度的中心圆斑。光点小于衍射极限:FWHM =0.46λ,旁瓣的强度低。形成直径为VD =0.5λ的阴影区域以进行径向极化,并接收到纵向分量中的暗点较小(VDz =0.44λ)。

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