GK

G. Kronschnabl

info

Please Note

3 records found

Journal article (2018) - D.A. Litvinov, V.N. Rudenko, U. Bach, N. Bartel, M. Bietenholz, D. Dirkx, L. I. Gurvits, G Kronschnabl, Maria Lindqvist, More authors...
We present an approach to testing the gravitational redshift effect using the RadioAstron satellite. The experiment is based on a modification of the Gravity Probe A scheme of nonrelativistic Doppler compensation and benefits from the highly eccentric orbit and ultra-stable atomic hydrogen maser frequency standard of the RadioAstron satellite. Using the presented techniques we expect to reach an accuracy of the gravitational redshift test of order 10-5, a magnitude better than that of Gravity Probe A. Data processing is ongoing, our preliminary results agree with the validity of the Einstein Equivalence Principle. ...
Journal article (2016) - D. A. Duev, S. V. Pogrebenko, J. C. Marty, V. Lainey, P. De Vicente, J. Quick, M. Nickola, A. Neidhardt, G. Kronschnabl, C. Ploetz, R. Haas, M. Lindqvist, G. Cimò, A. Orlati, A. V. Ipatov, M. A. Kharinov, A. G. Mikhailov, J. E J Lovell, J. N. McCallum, J. Stevens, S. A. Gulyaev, T. Natush, S. Weston, G. Molera Calvés, W. H. Wang, B. Xia, W. J. Yang, L. F. Hao, J. Kallunki, O. Witasse, T. M. Bocanegra Bahamón, L. I. Gurvits, M. M. Kettenis, J. Kania, V. Tudose, P. Rosenblatt
Context. The closest ever fly-by of the Martian moon Phobos, performed by the European Space Agency's Mars Express spacecraft, gives a unique opportunity to sharpen and test the Planetary Radio Interferometry and Doppler Experiments (PRIDE) technique in the interest of studying planet-satellite systems. Aims. The aim of this work is to demonstrate a technique of providing high precision positional and Doppler measurements of planetary spacecraft using the Mars Express spacecraft. The technique will be used in the framework of Planetary Radio Interferometry and Doppler Experiments in various planetary missions, in particular in fly-by mode. Methods. We advanced a novel approach to spacecraft data processing using the techniques of Doppler and phase-referenced very long baseline interferometry spacecraft tracking. Results. We achieved, on average, mHz precision (30 μm/s at a 10 s integration time) for radial three-way Doppler estimates and sub-nanoradian precision for lateral position measurements, which in a linear measure (at a distance of 1.4 AU) corresponds to ∼50 m. ...
Conference paper (2016) - D.A. Litvinov, U. Bach, R Haas, V.L. Kauts, B.Z. Kanevsky, A.V. Kovalenko, G Kronschnabl, V.V. Kulagin, Maria Lindqvist, G Molera Calves, A. Neidhardt, C. Plotz, N. Bartel, S. V. Pogrebenko, N.K. Porayko, V.N. Rudenko, K. V. Sokolovsky, A.I. Smirnov, V.A. Stepanyants, J. Yang, M.V. Zakhvatkin, K.G. Belousov, M. Bietenholz, A.V. Biriukov, G Cimo, D. A. Duev, L. I. Gurvits, A.V. Gusev
A test of a cornerstone of general relativity, the gravitational redshift effect, is currently being conducted with the RadioAstron spacecraft, which is on a highly eccentric orbit around Earth. Using ground radio telescopes to record the spacecraft signal, synchronized to its ultra-stable on-board H-maser, we can probe the varying flow of time on board with unprecedented accuracy. The observations performed so far, currently being analyzed, have already allowed us to measure the effect with a relative accuracy of 4 × 10−4 . We expect to reach 2.5×10−5 with additional observations in 2016, an improvement of almost a magnitude over the 40-year old result of the GP-A mission. ...