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Title: Multichannel Fiber-Optic Silicon Fabry–Pérot Interferometric Bolometer System for Plasma Radiation Measurements

Journal Article · · Photonics

A single-channel fiber-optic bolometer system based on a high-finesse silicon Fabry–Pérot interferometer (FPI) was previously reported, intended to measure plasma radiation from the magnetically confined fusion chamber. Recently, we developed a multichannel fiber-optic bolometer system with five bolometers multiplexed using a coarse wavelength division multiplexer (CWDM) and interrogated with a white-light system involving a superluminescent light-emission diode source and a high-speed spectrometer. One of the bolometers was used as the reference bolometer to compensate for the ambient temperature variations, and the other four bolometers were used for radiation measurement. The bolometers have a simple structure with a silicon pillar at the end of the single-mode fiber and a gold disk on the other side of the silicon pillar. They are also easy to fabricate without stringent requirements on the optical alignment. Analysis of the system optimization was performed to improve the noise performance and to mitigate the vibration effect that may present in the practical application. The system had a significantly enhanced measurement range compared to the previous high-finesse FPI bolometer system for measuring radiation. Test results performed in air using a 405 nm laser as the radiation source showed that the temperature resolution and the noise-equivalent power density of the sensing bolometers connected to each channel of the CWDM were, respectively, ~0.4 mK and ~0.1 W/m2, with a time constant of ~220 ms, which is comparable to the previous more complicated fiber-optic bolometer systems based on high-finesse FPIs that were interrogated using wavelength-scanning lasers.

Sponsoring Organization:
USDOE
Grant/Contract Number:
AC05-00OR22725
OSTI ID:
1822518
Journal Information:
Photonics, Journal Name: Photonics Journal Issue: 9 Vol. 8; ISSN PHOTC5; ISSN 2304-6732
Publisher:
MDPI AGCopyright Statement
Country of Publication:
Switzerland
Language:
English

References (14)

Monitoring the plasma radiation profile with real-time bolometer tomography at JET journal March 2021
Real‐time, vibration‐compensated CO 2 interferometer operation on the DIII‐D tokamak journal July 1988
Infrared Studies of Birefringence in Silicon journal November 1959
The ITER bolometer diagnostic: Status and plans journal October 2008
Far-infrared polarimetry diagnostic for measurement of internal magnetic field dynamics and fluctuations in the C-MOD Tokamak (invited) journal October 2012
The resistive bolometer for radiated power measurement on EAST journal September 2012
A fiber-optic bolometer based on a high-finesse silicon Fabry-Pérot interferometer journal June 2018
Fiber-optic silicon Fabry–Perot interferometric bolometer with improved detection limit for magnetic confinement fusion journal February 2021
Radiation measurement in plasma disruption by thin-foil infrared bolometer journal May 2021
Bolometer developments in diagnostics for magnetic confinement fusion journal October 2019
Analysis and evaluation of graded-index fiber lenses journal January 1987
Fiber-Optic Silicon Fabry-Perot Interferometric Bolometer: The Influence of Mechanical Vibration and Magnetic Field journal April 2020
Fringe Visibility Enhanced Extrinsic Fabry–Perot Interferometer Using a Graded Index Fiber Collimator journal June 2010
High-resolution and fast-response fiber-optic temperature sensor using silicon Fabry-Pérot cavity journal January 2015

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