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Bifocal flat lens with different imaging characteristics for a dual-sensor imaging system.
Yin Zhou1, Feng-Lin Kuang1, Rui Li1
1School of Electronics and Information Engineering, Sichuan University, Chengdu, 610065, China.
Scientific Reports
|November 8, 2022
Summary
Researchers developed a novel bifocal diffractive lens (BDL) for integrated dual-sensor imaging systems. This thin, flat lens offers both high-resolution magnified imaging and wide field-of-view imaging with extended depth of focus.
Area of Science:
- Optics and Photonics
- Materials Science
- Imaging Technology
Background:
- Dual-sensor imaging systems capture wide field-of-view (FOV) and magnified images simultaneously.
- Current systems often require bulky and complex setups.
- Miniaturization and integration are key challenges in advanced imaging.
Purpose of the Study:
- To propose and develop a bifocal flat lens for integrated and miniaturized dual-sensor imaging systems.
- To achieve two distinct focal characteristics from a single, thin optical element.
- To enhance imaging capabilities for simultaneous wide FOV and high-resolution capture.
Main Methods:
- A bifocal diffractive lens (BDL) was designed by combining specific elements from conventional zone plates (ZP).
- The BDL was fabricated with a thickness of 0.6 μm and a diameter of 6 mm.
- Experimental validation was performed to assess the imaging performance of both focal points.
Main Results:
- The developed BDL exhibits two foci: a long focus (~81 mm) for high-resolution magnified imaging (resolution up to 21.90″) and a short focus (~27 mm) for wide FOV imaging with a long depth of focus (DOF).
- Objects separated by 2880 mm were clearly imaged using the short focus.
- Experimental results surpassed the performance metrics of conventional refractive lenses.
Conclusions:
- The proposed bifocal flat lens enables integrated and miniaturized dual-sensor imaging.
- The BDL provides simultaneous wide FOV and high-resolution imaging capabilities.
- This technology offers superior performance compared to conventional lenses for dual-imaging applications.

