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Optimization of 350× optical zoom lens with diffractive optical element
Authors:Jung-Hung Sun  Yi-Chin Fang  Cheng-Mu Tsai
Affiliation:a Department of Mechanical and Automation Engineering, National Kaohsiung First University of Science and Technology College of Engineering, 2 Jhuoyue Road, Nanzih District, Kaohsiung City 811, Taiwan, ROC
b Department of Computer and Communication, Kun Shan University, No. 949, Da Wan Rd., Yung-Kang City, Tainan Hsien 710, Taiwan, ROC
Abstract:Through researching and validating, a set of optical designs using a diffractive optical element (DOE) and optimization process has been derived in this paper. We put forward a set of theories to solve the numerous quality issues in imaging and applied it to an optical design. For an optical design to be successful, it must comply with the standards of the optical system. Optical designers must also take into consideration imaging quality, wherein the most influential aspects are chromatic aberration and monochromatic aberration. We complied with systemic standards such as effective focal length and total system length. Diffractive Optical Element, based on the theory of wave phase difference, takes advantage of negative Abbe number, which might significantly eliminate chromatic aberrations of optics. Following the advanced technology applied to micro lens and etching process, precisely made micro DOE element now is possible to be manufactured in a large number. A 350× zoom lens with DOE is demonstrated in the proposal. The results show that regardless of whether chromatic aberration is axial or longitudinal, issues concerning the optical lens's chromatic aberration could be significantly reduced.
Keywords:Micro lens   Diffractive optical element   Micro lens structure   Chromatic aberration
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