Research on NCFCP compact broadband NIR detector imaging and energy transfer function

Author:

Zhou Jianwei1,Cai Hongxing1,Ren Yu1,Li Shuang1,Jiang Chunxu1ORCID,Lv Zhong1,Qu Guannan1,Tan Yong1ORCID,Shi Jing1ORCID,Wang Tingting1,Liu Quansheng1

Affiliation:

1. Changchun University of Science and Technology

Abstract

Nonlinear crystal frequency conversion imaging with direct detection by silicon-based detectors is an effective way to break through the limitations for existing near-infrared (NIR) detectors with expensive cost and high noise. In this paper, a broadband NIR detector imaging scheme based on the principle of nonlinear crystal frequency conversion (NCFCP) was proposed. A thin film of nonlinear crystal frequency conversion material (NCFCM) combined with a silicon-based detector was used to form a broadband NIR detector. The theoretically investigated energy transfer function was used as a guidance for experiment. Meanwhile, the relationship between the imaging effect and the energy transfer of the NCFCP-based compact broadband NIR detector in the NIR band was measured experimentally. The accuracy of the theoretical study had been verified by the measured transfer results.

Funder

Natural Science Foundation of Jilin Province

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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