Enhanced response over wavelength range of 7–12 µm for quantum wells in asymmetric micro-pillars

Author:

Wei-Wei Liu12,Xin-Yang Jiang13,Rui Xin12,Li Yu13ORCID,Hui Xia12ORCID,Ning Li12,Zhi-Feng Li12,Wei Lu12,Tian-Xin Li12

Affiliation:

1. Shanghai Institute of Technical Physics

2. University of Chinese Academy of Sciences

3. Shanghai Tech University

Abstract

Efficient coupling in broad wavelength range is desirable for wide-spectrum infrared light detection, yet this is a challenge for intersubband transition in semiconductor quantum wells (QWs). High-Q cavities mostly intensify the absorption at peak wavelengths but with shrinking bandwidth. Here, we propose a novel approach to expand the operating spectral range of the Quantum Well Infrared Photodetectors (QWIPs). By processing the QWs into asymmetric micro-pillar array structure, the device demonstrates a substantial enhancement in spectral response across the wavelength from 7.1 µm to 12.3 µm with guided mode resonance (GMR) effects. The blackbody responsivity is then increased by 3 times compared to that of the 45° polished edge-coupled counterpart. Meanwhile, the dark current density remains unchanged after the deep etching process, which will benefit the electrical performance of the detector with reduced volume duty ratio. In contrast to the symmetric micro-pillar array that contains simple resonance mode, the detectivity of QWIP in asymmetric pillar structure is found to be improved by 2-4 times within the range of 9.5 µm to 15 µm.

Funder

National Natural Science Foundation of China

Chinese Academy of Sciences

Science and Technology Commission of Shanghai Municipality

Publisher

Optica Publishing Group

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