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14 p, 6.2 MB Thermal transport in suspended silicon membranes measured by laser-induced transient gratings / Vega-Flick, Alejandro (CINVESTAV-Unidad Mérida) ; Duncan, Ryan A. (Massachusetts Institute of Technology. Department of Chemistry) ; Eliason, Jeffrey Kristian (Massachusetts Institute of Technology. Department of Chemistry) ; Cuffe, John (Massachusetts Institute of Technology) ; Johnson, Jeremiah A. (Massachusetts Institute of Technology. Department of Chemistry) ; Peraud, Jean-Philippe M. (Massachusetts Institute of Technology) ; Zeng, Lingping (Massachusetts Institute of Technology) ; Lu, Zhengmao (Massachusetts Institute of Technology) ; Maznev, Alex A. (Massachusetts Institute of Technology. Department of Chemistry) ; Wang, Evelyn N. (Massachusetts Institute of Technology) ; Alvarado Gil, Juan José (CINVESTAV-Unidad Mérida) ; Sledzinska, Marianna (Institut Català de Nanociència i Nanotecnologia) ; Sotomayor Torres, Clivia M. (Institut Català de Nanociència i Nanotecnologia) ; Chen, Gang (Massachusetts Institute of Technology) ; Nelson, Keith A. (Massachusetts Institute of Technology. Department of Chemistry)
Studying thermal transport at the nanoscale poses formidable experimental challenges due both to the physics of the measurement process and to the issues of accuracy and reproducibility. The laser-induced transient thermal grating (TTG) technique permits non-contact measurements on nanostructured samples without a need for metal heaters or any other extraneous structures, offering the advantage of inherently high absolute accuracy. [...]
2016 - 10.1063/1.4968610
AIP advances, Vol. 6, Issue 12 (December 2016) , art. 121903  

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