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Effect of annular apodization and pupil beam parameter in the focal region of high NA lens
Authors:K. Gokulakrishnan  P. Suresh  A. Jeyamurugan  T.V.S. Pillai  K.B. Rajesh  M. Vijayaraj
Affiliation:1. Department of ECE, Regional Center, Anna University: Tirunelveli Region, Tirunelveli 627007, Tamil Nadu, India;2. Department of ECE, National College of Engineering, Tirunelveli 627151, Tamil Nadu, India;3. Department of EEE, Holycross Engineering College, Thoothukudi 628851, Tamil Nadu, India;4. Department of Physics, University College of Engineering, Nagercoil 629004, Tamil Nadu, India;5. Department of Physics, Chikkanna Government Arts College, Tiruppur 641602, Tamil Nadu, India;6. Department of ECE, Government College of Engineering, Tirunelveli 627007, Tamil Nadu, India
Abstract:Focusing properties of the radially polarized axisymmetric Bessel-modulated Gaussian beam with quadratic radial dependence (QBG beam) and annular aperture are investigated theoretically by vector diffraction theory. Simulation results show that the intensity distribution in the focal region of the radially polarized axisymmetric QBG beam can be adjusted considerably by small beam parameter (μ) and annular aperture (δ). When μ increases, the focal spot may change to focal hole and changes focal pattern remarkably. On introducing annular aperture, focus can split or extends along the optical axis for different μ. In this paper, we have shown the generation of the focal spot, dark focal spot, focal split and increase in focal depth in the axial direction of the incident beam propagating through the aligned optical system.
Keywords:Beam parameter   Annular apodization   Focal pattern   Bessel-modulated Gaussian beam
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