12.07.2015 Views

GP-B Post-Flight Analysis—Final Report - Gravity Probe B - Stanford ...

GP-B Post-Flight Analysis—Final Report - Gravity Probe B - Stanford ...

GP-B Post-Flight Analysis—Final Report - Gravity Probe B - Stanford ...

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3.3 <strong>GP</strong>-B Technology TransferThis section has outlined <strong>GP</strong>-B technologies demonstrated for the first time in space applications ortechnologies with novel and significant improvements over previous implementations. We summarize in thefollowing chart these flight-proven technologies that are available for future missions.Technology Category Specific Implementation RealizationPrecision quartz fabricationand metrologyRoundness fab & metrology20nm peak to valleyDensity homogeneity parts in 10 7Surface orientation1 arc secFlatness better than λ/20Quartz stable reference Mechanical stability Strain less than 1 part in 10 10Robust precision bondingOptoBond TM hydroxide catalyzed bondingLarge Scale Cryogenic Systems Superfluid flight dewar 2441 liters, 17.3month hold timeGuard Tank90 day post-conditioning superfluid maintenancePorous plug phase separationFlawless on-orbit operation. Also flown on IRAS andCOBE after original <strong>GP</strong>-B developmentCryogenic ElectronicsSuperconducting thin film circuit technologies:No on-orbit failurespatterning, contacting, multilayer transformersDC SQUIDsNoise PSD 2x10 -5 Φ 0 /√Hz at 13 mHzCryo JFET photo detectors 0.8 fA/√Hz noise currentMagnetics Control AC shielding (superconducting) 1 part in 10 12Attitude and Translation ControlDC field reduction (Expanded superconductingshields)Precision field measurementNon magnetic material control, and fab techniquesComprehensive fight part testing< 10 -11 TeslaAbsolute dc fields

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