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      A confirmation of the general relativistic prediction of the Lense-Thirring effect.

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      Nature

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          Abstract

          An important early prediction of Einstein's general relativity was the advance of the perihelion of Mercury's orbit, whose measurement provided one of the classical tests of Einstein's theory. The advance of the orbital point-of-closest-approach also applies to a binary pulsar system and to an Earth-orbiting satellite. General relativity also predicts that the rotation of a body like Earth will drag the local inertial frames of reference around it, which will affect the orbit of a satellite. This Lense-Thirring effect has hitherto not been detected with high accuracy, but its detection with an error of about 1 per cent is the main goal of Gravity Probe B--an ongoing space mission using orbiting gyroscopes. Here we report a measurement of the Lense-Thirring effect on two Earth satellites: it is 99 +/- 5 per cent of the value predicted by general relativity; the uncertainty of this measurement includes all known random and systematic errors, but we allow for a total +/- 10 per cent uncertainty to include underestimated and unknown sources of error.

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          Author and article information

          Journal
          Nature
          Nature
          1476-4687
          0028-0836
          Oct 21 2004
          : 431
          : 7011
          Affiliations
          [1 ] Dipartimento di Ingegneria dell'Innovazione, Università di Lecce and INFN Sezione di Lecce, Via Monteroni, 73100 Lecce, Italy. ignazio.ciufolini@unile.it
          Article
          nature03007
          10.1038/nature03007
          15496915
          4027c18b-678f-4f35-a375-17169eaffdf2
          History

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