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Results 1 to 25 of 1262

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First results of the low frequency facility experimentDI VIRGILIO, A; BRACCINI, S; FRASCONI, F et al.Classical and quantum gravity (Print). 2004, Vol 21, Num 5, pp S1099-S1106, issn 0264-9381Conference Paper

Mechanical loss of the reflective coating and fluorite at low temperatureYAMAMOTO, K; MIYOKI, S; YAMAMOTO, A et al.Classical and quantum gravity (Print). 2004, Vol 21, Num 5, pp S1075-S1081, issn 0264-9381Conference Paper

Monocrystalline fibres for low thermal noise suspension in advanced gravitational wave detectorsAMICO, P; BOSI, L; TONELLI, M et al.Classical and quantum gravity (Print). 2004, Vol 21, Num 5, pp S1009-S1013, issn 0264-9381Conference Paper

Proposed cryogenic Q-factor measurement of mirror substratesNIETZSCHE, Sandor; ZIMMER, Anja; VODEL, Wolfgang et al.Classical and quantum gravity (Print). 2004, Vol 21, Num 5, pp S1133-S1138, issn 0264-9381Conference Paper

Investigation of mechanical dissipation in CO2 laser-drawn fused silica fibres and weldsHEPTONSTALL, Alastair; BARTON, Mark; TORRIE, Calum et al.Classical and quantum gravity (Print). 2010, Vol 27, Num 3, issn 0264-9381, 035013.1-035013.14Article

Reception frequency bandwidth of a gravitational resonant detector with optical readoutGUSEV, A. V; RUDENKO, V. N; CHEPRASOV, S. A et al.Classical and quantum gravity (Print). 2008, Vol 25, Num 5, issn 0264-9381, 055006.1-055006.14Article

Effect of filter frequency response on the uncertainty in measuring statistical estimators of input noiseROBERTS, M. J; BLALOCK, T. V.Review of scientific instruments. 1985, Vol 56, Num 2, pp 326-328, issn 0034-6748Article

Update on quadruple suspension design for Advanced LIGOASTON, S. M; BARTON, M. A; CUNNINGHAM, L et al.Classical and quantum gravity (Print). 2012, Vol 29, Num 23, issn 0264-9381, 235004.1-235004.25Article

The AEI 10 m prototype interferometerGOMER, S; BERTOLINI, A; KRANZ, O et al.Classical and quantum gravity (Print). 2010, Vol 27, Num 8, issn 0264-9381, 084023.1-084023.9Conference Paper

Controllable damping of high-Q violin modes in fused silica suspension fibersDMITRIEV, A. V; MESCHERIAKOV, S. D; TOKMAKOV, K. V et al.Classical and quantum gravity (Print). 2010, Vol 27, Num 2, issn 0264-9381, 025009.1-025009.8Article

Thermal-noise-limited underground interferometer CLIOAGATSUMA, Kazuhiro; ARAI, Koji; TATSUMI, Daisuke et al.Classical and quantum gravity (Print). 2010, Vol 27, Num 8, issn 0264-9381, 084022.1-084022.10Conference Paper

Thermal noise suppression : how much does it cost?VOLPE, Giovanni; WEHR, Jan; PETROV, Dmitri et al.Journal of physics. A, Mathematical and theoretical (Print). 2009, Vol 42, Num 9, issn 1751-8113, 095005.1-095005.8Article

Mechanical quality factor measurements of monolithically suspended fused silica test masses of the GEO 600 gravitational wave detectorSMITH, J. R; CAGNOLI, G; CROOKS, D. R. M et al.Classical and quantum gravity (Print). 2004, Vol 21, Num 5, pp S1091-S1098, issn 0264-9381Conference Paper

Influence of grooves and defects on the sapphire test mass Q-factorGRAS, S; JU, L; BLAIR, D. G et al.Classical and quantum gravity (Print). 2004, Vol 21, Num 5, pp S1121-S1126, issn 0264-9381Conference Paper

Can a system at curie temperature remain nonreciprocal even for signals ensuing from especially treated thermal noise?SANDTNER, J.Helvetica Physica Acta. 1993, Vol 66, Num 7-8, pp 901-902, issn 0018-0238Conference Paper

Experimental measurements of coating mechanical loss factorsCROOKS, D. R. M; CAGNOLI, G; SNEDDON, P. H et al.Classical and quantum gravity (Print). 2004, Vol 21, Num 5, pp S1059-S1065, issn 0264-9381Conference Paper

Variational approach to dynamics of interfaces and quantized vortex linesKAWASAKI, K.Physica. A. 1983, Vol 119, Num 1-2, pp 17-40, issn 0378-4371Article

The monolithic suspension for the Virgo interferometerLORENZINI, M.Classical and quantum gravity (Print). 2010, Vol 27, Num 8, issn 0264-9381, 084021.1-084021.8Conference Paper

Emergence of the acoustic Green's function from thermal noiseGODIN, Oleg A.The Journal of the Acoustical Society of America. 2007, Vol 121, Num 2, issn 0001-4966, EL96-EL102Article

The Hannover thermal noise experimentLEONHARDT, V; RIBICHINI, L; LÜCK, H et al.Classical and quantum gravity (Print). 2004, Vol 21, Num 5, pp S1127-S1131, issn 0264-9381Conference Paper

Micromachined optical microphone structures with low thermal-mechanical noise levelsHALL, Neal A; OKANDAN, Murat; LITTRELL, Robert et al.The Journal of the Acoustical Society of America. 2007, Vol 122, Num 4, pp 2031-2037, issn 0001-4966, 7 p.Article

Introduction to the physics of Brownian motorsREIMANN, P; HÄNGGI, P.Applied physics. A, Materials science & processing (Print). 2002, Vol 75, Num 2, pp 169-178, issn 0947-8396Article

The role of thermal noise in stationary hydrodynamical turbulenceMACHACEK, M.Physics letters. A. 1988, Vol 128, Num 1-2, pp 76-79, issn 0375-9601Article

Thermal noise in a pendulum suspended by multiple wiresHUSMAN, M. E; HOUGH, J; ROBEMON, N. A et al.Classical and quantum gravity (Print). 2004, Vol 21, Num 6, pp 1371-1381, issn 0264-9381, 11 p.Article

Corrélation des évaluations spectrales de l'entropie maximale et du «bruit thermique»GERSHMAN, A. B; ERMOLAEV, V. T.Radiotehnika (Moskva). 1988, Num 9, pp 39-40, issn 0033-8486Article

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