Abstract

Light scattered by a photodetector disturbs the probing field, resulting in noise. Cloaking is an effective method to reduce this noise. Here we investigate theoretically an emerging plasmonic material, zirconium nitride (ZrN), as a plasmonic cloak for silicon (Si) nanowire-based photodetectors and compare it with a traditional plasmonic material, gold (Au). Using Mie formalism, we have obtained the scattering cancelation across the visible spectrum. We found that ZrN cloaks produce a significant decrease in the scattering from bare Si nanowires, which is 40% greater than that obtained with Au cloaks in the wavelength region of 400–500 nm. The scattering cancelations become comparable at 550 nm, with Au providing a better scattering cancelation compared to ZrN over the wavelength region of 600–700 nm. To include the absorption and provide a measure of overall performance on noise reduction, a figure of merit (FOM), defined as the ratio of the absorption efficiency and the scattering efficiency of the cloaked nanowire to that of the bare Si nanowire, was calculated. We show that the optimized ZrN cloak provides up to 3 times enhancement of the FOM over a bare Si NW and a 60% improvement over an optimized Au-cloaked NW, in the wavelength region of 400–500 nm. An optimized Au-cloaked NW shows up to 17.69 times improvement in the wavelength region of 600–700 nm over a bare Si NW and up to a 2.7 times improvement over an optimized ZrN-cloaked NW. We also predicted the optimal dimensions for the cloaked NWs with respect to the largest FOM at various wavelengths between 400 and 650 nm.

Highlights

  • Photodetectors are utilized in many applications including sensing and imaging

  • We demonstrate theoretically, for the first time, that a conformal zirconium nitride (ZrN) shell acts as a plasmonic cloak for silicon nanowire-based photosensors

  • Our work demonstrates that a ZrN cloaking can be an effective approach for improving nanowire-based photosensors

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Summary

Introduction

We calculated the ratio of the absorption to scattering efficiency and use the ratio of that from a cloaked core-shell NW system over that of a bare Si NW as a figure of merit (FOM). To compare the cloaking ability of a ZrN shell on a Si NW with a traditional plasmonic material such as Au, contour plots of the total scattering efficiency, as functions of the core Si NW radius and the cloaking shell thickness, were plotted in the visible wavelength region between 400 and 700 nm, at 50 nm intervals.

Results
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