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Modeling and calibration of micro/nano FBG temperature probe for scanning probe microscopy.

Authors :
Liu Z
Chen N
Li S
Liu Y
Shang Y
Chen Z
Pang F
Wang T
Source :
Optics express [Opt Express] 2023 Jun 05; Vol. 31 (12), pp. 19453-19462.
Publication Year :
2023

Abstract

To accurately measure the local temperatures of the micro-nano area, we propose an optical method using a tapered fiber Bragg grating (FBG) probe with a nano tip for scanning probe microscopy (SPM). When the tapered FBG probe senses local temperature through near-field heat transfer, the intensity of the reflected spectrum decreases, along with a broadening bandwidth and a shift in the central peak position. Modeling the heat transfer between the probe and the sample shows that the tapered FBG probe is in a non-uniform temperature field when approaching the sample surface. Simulation of the probe's reflection spectrum reveals that the central peak position shifts nonlinearly with increasing local temperature. In addition, the near-field temperature calibration experiments show that the temperature sensitivity of the FBG probe increases nonlinearly from 6.2 pm/°C to 9.4 pm/°C as the sample surface temperature increases from 25.3°C to 160.4°C. The agreement of the experimental results with the theory and the reproducibility demonstrate that this method offers a promising approach for exploring micro-nano temperature.

Details

Language :
English
ISSN :
1094-4087
Volume :
31
Issue :
12
Database :
MEDLINE
Journal :
Optics express
Publication Type :
Academic Journal
Accession number :
37381360
Full Text :
https://doi.org/10.1364/OE.491821