• Title of article

    Measurement of gravitational time delay using drag-free spacecraft and an optical clock

  • Author/Authors

    Neil Ashby and Robert A. Nelson، نويسنده , , Peter L. Bender، نويسنده , , John L. Hall، نويسنده , , Jun Ye ، نويسنده , , Scott A. Diddams، نويسنده , , Steven R. Jefferts، نويسنده , , Nathan Newbury، نويسنده , , Chris Oates، نويسنده , , Rita Dolesi، نويسنده , , Stefano Vitale and William J. Weber، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2009
  • Pages
    6
  • From page
    414
  • To page
    419
  • Abstract
    Improved accuracy in measurement of the gravitational time delay of electromagnetic waves passing by the sun may be achieved with two drag-free spacecraft, one with a stable clock and laser transmitter and one with a high-stability transponder. We consider one spacecraft near the Earth-Sun L1 point with an advanced optical clock, and the transponder on a second satellite, which has a 2 year period orbit and eccentricity e = 0.37. Superior conjunctions will occur at aphelion 1, 3, and 5 years after launch of the second spacecraft. The measurements can be made using carrier phase comparisons on the laser beam that would be sent to the distant spacecraft and then transponded back. Recent development of clocks based on optical transitions in cooled and trapped ions or atoms indicate that a noise spectral amplitude of about 5 x 10~15/vHz at frequencies down to at least 1 microhertz can be achieved in space-borne clocks. An attractive candidate is a clock based on a single laser-cooled Yb+ trapped ion. Both spacecraft can be drag-free at a level of 1 x 10~13m/s2/vHz at frequencies down to at least 1 microhertz. The corresponding requirement for the LISA gravitational wave mission is 3 x 10~15m/s2/vHz at frequencies down to 10~4 Hz, and Gravitational Reference Sensors have been developed to meet this goal. They will be tested in the LISA Pathfinder mission, planned by ESA for flight in 2011. The requirements to extend the performance to longer times are mainly thermal. The achievable accuracy for determining the PPN parameter 7 is about 1 x 10~8.
  • Keywords
    gravitation , relativity , Time delay
  • Journal title
    Proceedings of the International Astronomical Union
  • Serial Year
    2009
  • Journal title
    Proceedings of the International Astronomical Union
  • Record number

    672966