84 citations · 345 across the 18 of their papers we have counts for
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Murphy et al. Reply to the Comment by Kopeikin on "Gravitomagnetic Influence on Gyroscopes and on the Lunar Orbit"
T. W. Murphy, K. Nordtvedt, S. G. Turyshev
Lunar laser ranging analysis, as regularly performed in the solar system barycentric frame, requires the presence of the gravitomagnetic term in the equation of motion at the stren…
The Gravitomagnetic Influence on Gyroscopes and on the Lunar Orbit
T. W. Murphy, K. Nordtvedt, S. G. Turyshev
Gravitomagnetism--a motional coupling of matter analogous to the Lorentz force in electromagnetism--has observable consequences for any scenario involving differing mass currents.…
The Laser Astrometric Test of Relativity: Science, Technology, and Mission Design
Slava G. Turyshev, Michael Shao
The Laser Astrometric Test of Relativity (LATOR) experiment is designed to explore general theory of relativity in the close proximity to the Sun -- the most intense gravitational…
Williams et al. Reply (to the Comment by Dumin on "Progress in Lunar Laser Ranging Tests of Relativistic Gravity")
James G. Williams, Slava G. Turyshev, Dale H. Boggs
A decreasing gravitational constant, G, coupled with angular momentum conservation is expected to increrase a planetary semimajor axis, a, as \dot a/a=-\dot G/G. Analysis of lunar…
A Mission to Explore the Pioneer Anomaly
The Pioneer Explorer Collaboration, H. Dittus, S. G. Turyshev +37
The Pioneer 10 and 11 spacecraft yielded the most precise navigation in deep space to date. These spacecraft had exceptional acceleration sensitivity. However, analysis of their ra…
A Route to Understanding of the Pioneer Anomaly
Slava G. Turyshev, Michael Martin Nieto, John D. Anderson
The Pioneer 10 and 11 spacecraft yielded the most precise navigation in deep space to date. However, while at heliocentric distance of 20--70 AU, the accuracies of their orb…