Midwavelength Infrared Photoluminescence and Lasing of Tellurium Elemental Solid and Microcrystals

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초록

Tellurium has been of great interest in physics, chemistry, material science, and more recently in nanoscience. However, information on the photoluminescence of Te crystals, crucial in understanding the material, has never been disclosed. Here, we present photoluminescence and lasing for the Te bulk crystal and microcrystals. Photoluminescence of Te bulk solid crystal was observed at 3.75 mu m in the midwavelength infrared (MWIR) region, matching the theoretically predicted value well. With increasing the photoexcitation intensity or decreasing temperature, we successfully observed MWIR random lasing of the bulk Te crystals at 3.62 mu m. Furthermore, the rod-shaped Te microcrystals efficiently exhibit second harmonic and third harmonic lasing at MWIR and short-wavelength infrared regions, respectively. Nonlinear coherent MWIR lasing from the Te microcrystals will serve as an excellent mid-IR light source, opening up new applications in infrared photonics, extremely long-depth penetration bioimaging, and optoelectronics.

키워드

BAND-STRUCTUREOPTICAL-PROPERTIESGROWTH-MECHANISMLASER ACTIONNANOWIRESNANOTUBESNANOSTRUCTURESLOCALIZATIONNANORODSNANOPARTICLES
제목
Midwavelength Infrared Photoluminescence and Lasing of Tellurium Elemental Solid and Microcrystals
저자
Choi, DongsunJeong, Kwang Seob
DOI
10.1021/acs.jpclett.9b01523
발행일
2019-08-01
유형
Article
저널명
The Journal of Physical Chemistry Letters
10
15
페이지
4303 ~ 4309