Deep subwavelength optical imaging using correlated nano-torches

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Abstract

The authors propose and numerically demonstrate an ultra-high resolution (wavelength/50∼40 nm at wavelength λ = 2.08 μ m), high-throughput (∼66%), and non-destructive optical lens with a large contrast-to-noise ratio, based on the notion of correlated nano-torches formed in a subwavelength metallic grating. The correlations between the torches also allow the determination of the complex refractive index of the sample. © 2013 AIP Publishing LLC.

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APA

Shen, Y., Wang, L. V., & Shen, J. T. (2013). Deep subwavelength optical imaging using correlated nano-torches. Applied Physics Letters, 103(20). https://doi.org/10.1063/1.4832070

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