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PROGRESS IN MEASUREMENTS OF THE GRAVITATIONAL BENDING OF RADIO WAVES USING THE VLBA

E. B. FomalontNational Radio Astronomy Observatory, Charlottesville, VA 22903, USA; [email protected]Sergei M. KopeikinDepartment of Physics & Astronomy, University of Missouri, Columbia, MO 65211, USA; [email protected]G. E. LanyiJet Propulsion Laboratory, California Institute of Technology, Pasadena, CA 91109, USA; [email protected]John M. BensonNational Radio Astronomy Observatory, Socorro, NM 87801, USA; [email protected]
2009en
ABI

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We have used the Very Long Baseline Array (VLBA) at 43, 23 and 15 GHz to measure the solar gravitational deflection of radio waves among four radio sources during an 18-day period in October 2005. Using phase-referenced radio interferometry to fit the measured phase delay to the propagation equation of the parameterized post-Newtonian (PPN) formalism, we have determined the deflection parameter γ = 0.9998 ± 0.0003 (68 % confidence level), in agreement with General Relativity. The results come mainly from 43 GHz observations where the refraction effects of the solar corona were negligible beyond 3 degrees from the sun. The purpose of this experiment is three-fold: to improve on the previous results in the gravitational bending experiments near the solar limb; to examine and evaluate the accuracy limits of terrestrial VLBI techniques; and to determine the prospects and outcomes of future experiments. Our conclusion is that a series of improved designed experiments with the VLBA could increase the presented accuracy by at least a factor of 4. – 2 – Subject headings: gravitation—quasars: individual (3C279)—relativity techniques: interferometric 1.

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