Effects of localized laser-induced heating in the photoluminescence of silicon-vacancy color centers in 4H-SiC

A Adolfo Misiara (Department of Physics, Florida International University 1 , Miami, Florida 33199,) S Stephen Revesz (Department of Physics, Florida International University 1 , Miami, Florida 33199,) I Ibrahim Boulares (U.S. Army Combat Capabilities Development Command, Army Research Laboratory 2 , Adelphi, Maryland 20783,) H Hebin Li (Department of Physics, University of Miami 3 , Coral Gables, Florida 33124,)

Abstract

Silicon-vacancy (VSi) color centers in 4H-SiC are optically accessible through their zero-phonon line (ZPL) photoluminescence (PL), which is sensitive to the sample temperature. We report the effects of localized laser-induced heating in 4H-SiC by measuring the PL spectra of VSi color centers. The effects of laser-induced heating manifest as the decrease in the peak height, redshift, and broadening of the ZPLs in the PL spectrum. The local temperature in the sample can be determined from the center energy of the ZPLs by using the Varshni equation. The sample temperature can be modeled as a system in contact with a thermal reservoir while being heated by a laser beam. This work highlights the importance of considering laser-induced heating in the optical properties of color centers in 4H-SiC and their potential applications. The result also suggests that the sharp and bright ZPLs of color centers can be used as local temperature probes in 4H-SiC devices.

Article Details

Volume / Issue Vol. 137, Issue 15
Published April 21, 2025
ISSN 0021-8979
Publisher American Institute of Physics

Journal Info

Journal of Applied Physics

American Institute of Physics

ISSN: 0021-8979 Physical Sciences

Authors (4)

A

Adolfo Misiara

Department of Physics, Florida International University 1 , Miami, Florida 33199,

S

Stephen Revesz

Department of Physics, Florida International University 1 , Miami, Florida 33199,

I

Ibrahim Boulares

U.S. Army Combat Capabilities Development Command, Army Research Laboratory 2 , Adelphi, Maryland 20783,

H

Hebin Li

Department of Physics, University of Miami 3 , Coral Gables, Florida 33124,