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Updated: Dec 16, 2025

Demonstration of a Hyperlens-integrated Microscope and Super-resolution Imaging
Published on: September 8, 2017
A novel approach to Fabry-Pérot-resonance-based lens and demonstrating deep-subwavelength imaging
Md Anzan-Uz-Zaman1,2, Kyungjun Song3, Duck-Gyu Lee1
1Department of Nature-Inspired Nano Convergence Systems, Korea Institute of Machinery and Materials, 156 Gajeongbuk-Ro, Daejeon, 34103, Republic of Korea.
Abstract:
During our research, we explored a novel way to represent subwavelength imaging and derived a transmission equation to explicate the FP (Fabry-Pérot) resonance phenomena. Subsequently, using analysis and observation, we performed deep-subwavelength imaging. Both numerically and experimentally, imaging with super-resolution was achieved at deep subwavelength scale of λ/56.53 with a lens thickness 212 mm. Our results also showed that by increasing lens thickness, higher resolution can be achieved. Moreover, via a single source study, we showed the full width at half maximum range and predicted the size of smallest detectable object. We also observed that with a greater lens thickness, finer features could be detected. These findings may open a new route in near-field imaging for practical applications such as biometric sensors, ultrasonic medical equipment, and non-destructive testing.
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