DOE OSTI · 2997110
Time-domain thermoreflectance
Abstract
Time-domain thermoreflectance (TDTR) has been instrumental in measuring the heat transfer properties of bulk and nanostructured materials over the past two decades. In this Primer, we describe the optical and thermal aspects of TDTR, with an in-depth discussion on the theory, apparatus design and implementation. We present examples that illustrate the ability of TDTR to measure thermal conductivity tensors, thermal conductance across material interfaces, and volumetric heat capacity of thin films, 2D materials and bulk materials. The ability of TDTR to spatially resolve thermal properties is useful for studying heterogeneous material systems, such as materials processed in or subjected to extreme environments. We consider current limitations of pump–probe metrologies and discuss recent advancements of TDTR, such as time-resolved magneto-optic Kerr effect (TR-MOKE), beam-offset TDTR/TR-MOKE, steady-state thermoreflectance, frequency-domain thermoreflectance and laser-flash TDTR. Lastly, we present an outlook on anticipated technological developments to further expand the ability of TDTR to measure nanoscale thermal properties.
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Mohan, Ramya [University of Virginia, Charlottesville, VA (United States)], Khan, Samreen [University of California, Riverside, CA (United States)] (ORCID:0000000191001057), Wilson, Richard B. [University of California, Riverside, CA (United States)], Hopkins, Patrick E. [University of Virginia, Charlottesville, VA (United States)] (ORCID:000000023403743X). 2025-08-28. Time-domain thermoreflectance. https://doi.org/10.1038/s43586-025-00425-8
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