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Volumn 301, Issue 3-4, 2002, Pages 215-219
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Maximum heat transfer along a sapphire suspension fiber for a cryogenic interferometric gravitational wave detector
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Author keywords
Boundary scattering; Cryogenic interferometer; Cryogenic mirror; Gravitational wave; LCGT; Sapphire; Thermal conductivity
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Indexed keywords
CRYOGENICS;
FIBERS;
GRAVITATIONAL EFFECTS;
GRAVITY WAVES;
INTERFEROMETRY;
MIRRORS;
SAPPHIRE;
SIGNAL DETECTION;
BOUNDARY SCATTERING;
GRAVITATIONAL WAVE DETECTORS;
LCGT;
MAXIMUM HEAT TRANSFER;
SAPPHIRE FIBER;
TEMPERATURE RANGE;
THERMAL CONDUCTORS;
THERMAL CONDUCTIVITY;
FERROMAGNETIC MATERIAL;
ARTICLE;
FIBER;
GRAVITY;
HEAT TRANSFER;
LIGHT SCATTERING;
SEMICONDUCTOR;
THERMAL CONDUCTIVITY;
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EID: 0037178994
PISSN: 03759601
EISSN: None
Source Type: Journal
DOI: 10.1016/S0375-9601(02)00985-4 Document Type: Article |
Times cited : (44)
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References (23)
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