Generation of sub wavelength super-long dark channel using high NA lens axicon
Kesavan Lalithambigai, P. Suresh, Venkatraman Ravi, K. Prabakaran, Zbigniew Jaroszewicz, K. B. Rajesh, Ponnusamy Munusamy Anbarasan, T. Pillai
Abstract
Kesavan Lalithambigai, P. Suresh, Venkatraman Ravi, K. Prabakaran, Zbigniew Jaroszewicz, K. B. Rajesh, Ponnusamy Munusamy Anbarasan, T. Pillai
Abstract
We investigate the focusing properties of a double-ring-shaped azimuthally polarized beam by a high numerical aperture (NA) lens axicon based on vector diffraction theory. We observe that our proposed system generates a sub wavelength focal hole of 0.5λ having large uniform focal depth of 48λ without any annular aperture. We also observed that the distribution of the total intensity near the focus has little variation with the degree of truncation β of the incident beam by the pupil. The authors expect such a super-long dark channel may find applications in optical, biological, and atmospheric sciences.
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We investigate the focusing properties of a double-ring-shaped azimuthally polarized beam by a high numerical aperture (NA) lens axicon based on vector diffraction theory. We observe that our proposed system generates a sub wavelength focal hole of 0.5λ having large uniform focal depth of 48λ without any annular aperture. We also observed that the distribution of the total intensity near the focus has little variation with the degree of truncation β of the incident beam by the pupil. The authors expect such a super-long dark channel may find applications in optical, biological, and atmospheric sciences.
Key concepts: Axicon, Optics, Physics, Lens (geology), Diffraction, Wavelength, Numerical aperture, Aperture (computer memory)