Microstructure and variable emittance property of annealed La-Sr-Mn-O films
Author:
Publisher
Elsevier BV
Subject
Geochemistry and Petrology,General Chemistry
Reference14 articles.
1. A variable-emittance radiator based on a metal-insulator transition of (La, Sr)MnO3 thin films;Shimakawa;Appl. Phys. Lett.,2002
2. Tachikawa S, Ohnishi A, Shimakawa Y, Ochi A, Okamoto A, Nakamura Y. Development of a variable emittance radiator based on a perovskite manganese oxide. 8th AIAA/ASME Joint Thermophysics and Heat Transfer Conference. St. Louis, Missouri, 2002.
3. Niklasson. Infrared emittance modulation of all-thin-film electrochromic devices;Anna-Lena;Materials Letters,2004
4. Douglas D M, Swanson T, Osiander R, Champion J, Darrin A G, Biter W, Chandrasekhar P. Development of the variable emittance thermal suit for the space technology 5 microsatellite. Space Technology and Applications International Forum (STAIF). Albuquerque, USA, 2002.
5. Osiander R, Champion J L, Darrin M A, Douglas D M, Swanson T D, Allen J J, Wyckoff E E. MEMS shutters for spacecraft thermal control. Nanotech 2002. Houston, TX, United States, 2002.
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