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Mid-infrared spectroscopic thermotransmittance measurements in dielectric materials for thermal imaging

Article dans une revue avec comité de lecture
Auteur
BOURGES, C.
2037 Laboratoire de cristallographie et sciences des matériaux [CRISMAT]
1002421 Institut de Mécanique et d'Ingénierie [I2M]
ccCHEVALIER, Stéphane
1002421 Institut de Mécanique et d'Ingénierie [I2M]
ccMAIRE, Jeremie
1002421 Institut de Mécanique et d'Ingénierie [I2M]
ccSOMMIER, Alain
1002421 Institut de Mécanique et d'Ingénierie [I2M]
ccPRADERE, Christophe
50686 Laboratoire du Futur [LOF]
DILHAIRE, S.
136813 Laboratoire Ondes et Matière d'Aquitaine [LOMA]

URI
http://hdl.handle.net/10985/24808
DOI
10.1063/5.0176689
Date
2024-01-05
Journal
Applied Physics Letters

Résumé

Thermal considerations affect the performance of most microsystems. Although surface techniques can give information on the thermal properties within the material or about buried heat sources and defects, mapping temperature and thermal properties in three dimension (3D) is critical and has not been addressed yet. Infrared thermography, commonly used for opaque materials, is not adapted to semi-transparent samples such as microfluidic chips or semiconductor materials in the infrared range. This work aims at answering these needs by using the variations of transmittance with temperature to obtain information on the temperature within the thickness of the sample. We use a tunable mid-infrared light source combined with an infrared camera to measure these variations of transmittance in a glass wafer. We couple this technique with a thermal model to extract the thermotransmittance coefficient—the coefficient of temperature variation of the transmittance. We then introduce a semiempirical model based on Lorentz oscillators to estimate the temperature-dependent optical properties of our sample in the mid-IR spectral range. Combined with the measurement, this paper reports the spectroscopic behavior of the thermotransmittance coefficient in the mid-IR range and a way to predict it.

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  • Institut de Mécanique et d’Ingénierie de Bordeaux (I2M)

Documents liés

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  • Infrared thermotransmittance-based temperature field measurements in semitransparent media 
    Article dans une revue avec comité de lecture
    BOURGES, C.; ccCHEVALIER, Stéphane; MAIRE, J.; ccSOMMIER, Alain; PRADÈRE, C.; DILHAIRE, S. (AIP Publishing, 2023-03-01)
    Contactless temperature field measurements in or at the surfaces of semitransparent media are a scientific challenge as classical thermography techniques based on proper material emission cannot be used. In this work, an ...
  • Surface and average volume temperature measurements in semitransparent media based on multispectral thermotransmittance 
    Article dans une revue avec comité de lecture
    BOURGÈS, C.; ccMAIRE, Jeremie; ccCHEVALIER, Stéphane; ccDILHAIRE, Stefan (Elsevier BV, 2024-12)
    Temperature plays an essential role in maintaining the performance of microsystems, which calls for three-dimensional mapping of heat sources, hot spots and thermal properties. In this context, infrared (IR) thermography ...
  • Multiscale aspects of the response of a temperature field to a pulsed laser or a periodic laser spot: some applications for IR thermography for non destructive evaluation, terahertz tomography, super-resolution, and microscale heat transfer 
    Communication avec acte
    BATSALE, Jean-Christophe; ccABISSET-CHAVANNE, Emmanuelle; ccACHCHAQ, Fouzia; ccAOUALI, Abderezak; ccCHEVALIER, Stéphane; ccGROZ, Marie-Marthe; ccMAIRE, Jeremie; ccSOMMIER, Alain (SPIE, 2023-06-12)
    The study of the response of a temperature field (recorded from IR cameras) to a laser spot heating is increasingly used for NDE (Non Destructive Evaluation) applications. The most classical type of application is to use ...
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    Article dans une revue avec comité de lecture
    ccAOUALI, Abderezak; LAFARGUE-TALLET, Thomas; ccCHEVALIER, Stéphane; ccSOMMIER, Alain; PEIFFER, Raymond; TAILLANDIER, Maximilian; BATSALE, Jean-Christophe; ccPRADERE, Christophe (Informa UK Limited, 2023-07-06)
    The knowledge of the amplitude and the spatial distribution of an excitation flux is of great interest for the quantification of heat sources. In this work, the development of a non-contact imaging powermeter based on the ...
  • Ultra-broadband contactless imaging power meter 
    Article dans une revue avec comité de lecture
    AOUALI, Abderezak; ccCHEVALIER, Stéphane; SOMMIER, Alain; AYADI, M.; BATSALE, Jean-Christophe; BALAGEAS, Daniel; PRADERE, Christophe (The Optical Society of America, 2021)
    Knowledge of the spatial and temporal distribution of heat flux is of great interest for the quantification of heat sources. In this work, we describe the development of a new ultra-broadband contactless imaging power meter ...

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