Optical Efficiency Enhancement of Nanojet-Based Dielectric Double-Material Color Splitters for Image Sensor Applications

Author:

Shramkova Oksana,Drazic Valter,Varghese Bobin,Blondé Laurent,Allié Valerie

Abstract

We propose a new type of color splitter, which guides a selected bandwidth of incident light towards the proper photosensitive area of the image sensor by exploiting the nanojet (NJ) beam phenomenon. Such splitting can be performed as an alternative to filtering out part of the received light on each color subpixel. We propose to split the incoming light thanks to a new type of NJ-based near-field focusing double-material element with an insert. To suppress crosstalk, we use a Deep-Trench Isolation (DTI) structure. We demonstrate that the use of a dielectric insert block allows for reduction in the size of the color splitting element. By changing the position of the DTI, the functionality of separating blue, green and red light can be improved.

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

Reference37 articles.

1. Crosstalk and microlens study in a color CMOS image sensor

2. Roadmap for CMOS image sensors: Moore meets Planck and Sommerfeld;Catrysse;Proc. SPIE,2005

3. Improvement of crosstalk on 5 M CMOS image sensor with 1.7 × 1.7 µm pixels;Koo;Proc. SPIE,2007

4. CMOS image sensors: State-of-the-art

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