Realizing the High Efficiency of Type‐II Superlattice Infrared Sensors Integrated Wire‐Grid Polarizer via Femtosecond Laser Polishing

Author:

Kim Hyesu12ORCID,Jeon Jiyeon3,Jo Junhee12,Chun Byong Sun3,Lee Sang Jun34,Chang Won Seok12ORCID

Affiliation:

1. Nano‐convergence Manufacturing Research Division Korea Institute of Machinery and Materials (KIMM) Daejeon 34103 South Korea

2. Department of Nanomechatronics University of Science and Technology (UST) Daejeon 34113 Republic of Korea

3. Semiconductor and Display Metrology Group Korea Research Institute of Standards and Science (KRISS) Daejeon 34113 Republic of Korea

4. Department of Nano Convergence Measurement University of Science and Technology (UST) Daejeon 34113 Republic of Korea

Abstract

AbstractA comprehensive strategy to enhance the polarization performance of mid‐wave infrared photodetectors (PDs) is developed and implemented by integrating wire‐grid polarizers (WGPs) using nanoimprint lithography and femtosecond laser (FSL) polishing. This combined approach offers significant advantages, including large‐area fabrication capabilities, practical device integration, and improved polarization characteristics. By addressing optical losses, the primary factor contributing to polarization degradation through the thermal effects of FSL polishing, substantial improvements are achieved in surface roughness and grain boundary reduction on the WGP, resulting in remarkable performance enhancements. As a result, the extinction ratio of the integrated WGP InAs/GaSb type‐II superlattice PD achieves an impressive value of up to 1044. This approach holds promising potential for advancing polarization‐based imaging and measurement systems to new heights.

Funder

National Research Foundation of Korea

Ministry of Science and ICT, South Korea

Ministry of Trade, Industry and Energy

Publisher

Wiley

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