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Cumming, A V; Cunningham, L; Hammond, G D; Haughian, K; Hough, J; Kroker, S; Martin, I W; Nawrodt, R; Rowan, S; Schwarz, C; van Veggel, A A
Classical and quantum gravity, 01/2014, Letnik: 31, Številka: 2Journal Article
One of the most significant limits to the sensitivity of current, and future, long-baseline interferometric gravitational wave detectors is thermal displacement noise of the test masses and their suspensions. This paper reports results of analytical and experimental studies of the limits to thermal noise performance of cryogenic silicon test mass suspensions set by two constraints on suspension fibre dimensions: the minimum dimensions required to allow conductive cooling for extracting incident laser beam heat deposited in the mirrors; and the minimum dimensions of fibres (set by their tensile strength) which can support test masses of the size envisaged for use in future detectors. We report experimental studies of breaking strength of silicon ribbons, and resulting design implications for the feasibility of suspension designs for future gravitational wave detectors using silicon suspension fibres. We analyse the implication of this study for thermal noise performance of cryogenically cooled silicon suspensions.
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JCR | SNIP | JCR | SNIP | JCR | SNIP | JCR | SNIP |
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