Solar System Interiors, Atmospheres, and Surfaces Investigations via Radio Links: Goals for the Next Decade
暂无分享,去创建一个
David E. Smith | Ryan S. Park | F. Ferri | B. Tapley | M. Zuber | A. Mannucci | A. Konopliv | S. Asmar | J. Barriot | K. Cahoy | F. LeMoine | D. Bell | T. Ely | S. Bruinsma | P. Bender | C. Ao | E. Marouf | C. Edwards | F. Flasar | E. Mazarico | V. Dehant | N. Renno | P. Rosenblatt | P. Steffes | Ö. Karatekin | R. Choudhary | S. Goossens | M. Wieczorek | A. Genova | A. Ermakov | P. Cappuccio | L. Iess | A. Verma | I. Linscott | J. Marty | T. Hoolst | M. Yseboodt | B. Häusler | M. Bird | S. Tellmann | S. L. Maistre | T. Andert | R. Lillis | R. French | D. Hinson | P. Withers | Y. Kaspi | D. Durante | M. Parisi | D. Atkinson | C. Dumoulin | T. Bocanegra-Bahamon | B. Bills | J. Armstrong | P. Tortora | D. Serra | R. Helled | M. Hofstadter | H. Ando | P. Beauchamp | S. Turyshev | W. Williamson | P. Vergados | M. Pätzold | S. Matousek | R. A. Simpson | M. Zannoni | V. Notaro | D. Buccino | R. Preston | M. D. Benedetto | H. Elliott | E. Kursinski | N. Yu | G. Botteon | T. Imamura | A. Jongeling | K. Matsumoto | G. G. Peytaví | T. Lazio | M. M. Kobayashi | M. Pugh | A. Komjáthy | Mitchell Watkins | N. Ashby
[1] Virginia Notaro,et al. Reducing Doppler noise with multi-station tracking: The Cassini test case , 2020 .
[2] T. Guillot,et al. Uranus and Neptune: Origin, Evolution and Internal Structure , 2019, Space Science Reviews.
[3] D. Stevenson,et al. Thermodynamically Governed Interior Models of Uranus and Neptune , 2019, The Planetary Science Journal.
[4] Xiaoli Sun,et al. Trilogy, a Planetary Geodesy Mission Concept for Measuring the Expansion of the Solar System. , 2018, Planetary and space science.
[5] Erwan Mazarico,et al. Solar system expansion and strong equivalence principle as seen by the NASA MESSENGER mission , 2018, Nature Communications.
[6] M. Showalter,et al. A Vision for Ice Giant Exploration , 2017 .
[7] A. Mannucci,et al. The future of planetary atmospheric, surface, and interior science using radio and laser links , 2017, 2017 XXXIInd General Assembly and Scientific Symposium of the International Union of Radio Science (URSI GASS).
[8] T. Guillot,et al. The effect of Jupiter oscillations on Juno gravity measurements , 2016, 1610.00250.
[9] S. Asmar,et al. Mars Cube One (MarCO) shifting the paradigm in relay deep space operations , 2016 .
[10] A. Mannucci,et al. A first demonstration of Mars crosslink occultation measurements , 2015 .
[11] David E. Smith,et al. Gravity Field of the Moon from the Gravity Recovery and Interior Laboratory (GRAIL) Mission , 2013, Science.
[12] Luciano Iess,et al. Reducing antenna mechanical noise in precision spacecraft tracking , 2008 .
[13] J. W. Armstrong,et al. Low-Frequency Gravitational Wave Searches Using Spacecraft Doppler Tracking , 2006, Living reviews in relativity.
[14] M. Watkins,et al. GRACE Measurements of Mass Variability in the Earth System , 2004, Science.
[15] Luciano Iess,et al. Stochastic Gravitational Wave Background: Upper Limits in the 10–6 to 10–3 Hz Band , 2003 .
[16] P. Bender. Proposed microwave transponders for early lunar robotic landers , 1994 .
[17] R. Woo. Solar cycle variation of interplanetary disturbances observed as Doppler scintillation transients , 1993 .
[18] R. Preston. Dual-Spacecraft Radio Metric Tracking , 1974 .
[19] C. Counselman,et al. Astronomical Applications of Differential Interferometry , 1972, Science.
[20] Julia Bell,et al. Expected Performance of the Deep Space Atomic Clock Mission , 2014 .
[21] W. Folkner,et al. Mars planetary geodesy using earth-based observations of Mars landers , 1992 .