Paper
20 August 2013 Design and fabrication of diffractive optical elements with complex profile by interference
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Proceedings Volume 8913, International Symposium on Photoelectronic Detection and Imaging 2013: Optical Storage and Display Technology; 89130P (2013) https://doi.org/10.1117/12.2033222
Event: ISPDI 2013 - Fifth International Symposium on Photoelectronic Detection and Imaging, 2013, Beijing, China
Abstract
A novel method is presented for the design and the fabrication of the Diffractive Optical Elements (DOEs) with arbitrary complex phase profile based on interference. The DOEs are designed to modulate the complex light wave by the analytical formulas, and asymmetric holographic DOE with cubic phase modulation is fabricated by two-step exposure technique on flat plane. Further it is employed for the modulation of the optical intensity on curved surfaces (CS) and apply it to fabricate diffractive optical elements (DOEs) with arbitrary profile and large area on CS. Both a binary pattern and a gray pattern are reconstructed numerically on the lens surfaces with big curvatures in large areas, while a binary and nonperiodic pattern is produced experimentally. The simulations together with the experiment demonstrate the validity of the method. It is believed that micro- or nano- optical elements with smaller feature sizes can be fabricated by the proposed method when an optical microscopy system is used. It will be a very efficient and convenient way to design and fabricate the DOEs with required complex fine structure.
© (2013) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Juan Liu, Rui Shi, Haozhi Zhao, and Yongtian Wang "Design and fabrication of diffractive optical elements with complex profile by interference", Proc. SPIE 8913, International Symposium on Photoelectronic Detection and Imaging 2013: Optical Storage and Display Technology, 89130P (20 August 2013); https://doi.org/10.1117/12.2033222
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KEYWORDS
Diffractive optical elements

Modulation

Optical design

Diffraction

Binary data

Fabrication

Holography

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