Near-infrared imaging via upconversion in Er3+:CaF2 crystal with dual wavelength excitation

Author:

Akabe Yugo1,Shinohara Keito1,Cadatal-Raduban Marilou123ORCID,Yoshikawa Akira45,Shimizu Toshihiko1,Kato Kosaku1ORCID,Agulto Verdad C.1,Nakajima Makoto1ORCID,Sarukura Nobuhiko1,Damdee Benchaphorn6,Kaewkhao Jakrapong6,Komeda Osamu7,Suto Hiroyuki7,Yamanoi Kohei1

Affiliation:

1. Osaka University

2. Unitec Institute of Technology

3. Massey University

4. Tohoku University

5. C&A Corporation

6. Nakhon Pathom Rajabhat University

7. Advanced Material Engineering Division

Abstract

We propose a system for imaging 1510 nm near-infrared (NIR) wavelength via upconversion (UC) luminescence in an Er3+-doped CaF2 crystal. Er3+ ions are excited from the ground to the excited state levels by an 800-nm pre-excitation wavelength, followed by the promotion of these ions to a higher energy level by the NIR excitation wavelength. Relaxation of these excited ions gives rise to 540 nm UC luminescence in the visible region, enabling the detection of the 1510 nm NIR wavelength. Using this UC scheme, 1510 nm was successfully imaged. Our system enables imaging of NIR wavelengths using low-cost optics and readily available Si-based detectors that are sensitive only to visible wavelengths, opening new possibilities for detection and imaging of NIR wavelengths.

Funder

Japan Society for the Promotion of Science

Publisher

Optica Publishing Group

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