Mio—First Comprehensive Exploration of Mercury’s Space Environment: Mission Overview
暂无分享,去创建一个
H. Hayakawa | M. Fujimoto | Wolfgang Baumjohann | S. Barabash | O. Korablev | H. Kojima | A. Matsuoka | Y. Kasaba | J. Wahlund | Masanori Kobayashi | G. Murakami | H. Ogawa | S. Matsuda | T. Seki | Y. Saito | I. Yoshikawa | S. Yagitani | M. Moncuquet | D. Delcourt | M. Hirahara | Yoshifumi Saito
[1] K. Glassmeier,et al. BepiColombo - Mission Overview and Science Goals , 2021, Space Science Reviews.
[2] S. Martinez,et al. BepiColombo Ground Segment and Mission Operations , 2021, Space Science Reviews.
[3] H. Lichtenegger,et al. BepiColombo Science Investigations During Cruise and Flybys at the Earth, Venus and Mercury , 2021, Space Science Reviews.
[4] E. Grün,et al. Mercury Dust Monitor (MDM) Onboard the Mio Orbiter of the BepiColombo Mission , 2020, Space Science Reviews.
[5] C. Russell,et al. The BepiColombo–Mio Magnetometer en Route to Mercury , 2020, Space Science Reviews.
[6] D. Rothery,et al. Investigating Mercury’s Environment with the Two-Spacecraft BepiColombo Mission , 2020, Space Science Reviews.
[7] Y. Kasahara,et al. Plasma Wave Investigation (PWI) Aboard BepiColombo Mio on the Trip to the First Measurement of Electric Fields, Electromagnetic Waves, and Radio Waves Around Mercury , 2020 .
[8] H. Hayakawa,et al. Mission Data Processor Aboard the BepiColombo Mio Spacecraft: Design and Scientific Operation Concept , 2020, Space Science Reviews.
[9] J. G. Sample,et al. The Space Physics Environment Data Analysis System (SPEDAS) , 2019, Space Science Reviews.
[10] J. Slavin,et al. MESSENGER Observations of Fast Plasma Flows in Mercury's Magnetotail , 2018, Geophysical Research Letters.
[11] Satoshi Yagitani,et al. Geospace exploration project ERG , 2018, Earth, Planets and Space.
[12] C. Johnson,et al. A Dynamic Model of Mercury's Magnetospheric Magnetic Field , 2017, Geophysical research letters.
[13] C. Dong,et al. Atmospheric escape from the TRAPPIST-1 planets and implications for habitability , 2017, Proceedings of the National Academy of Sciences.
[14] Chuanfei Dong,et al. Is Proxima Centauri b Habitable? A Study of Atmospheric Loss , 2017, 1702.04089.
[15] C. S. Fernandes,et al. Seven temperate terrestrial planets around the nearby ultracool dwarf star TRAPPIST-1 , 2017, Nature.
[16] M. Lockwood,et al. The Solar Probe Plus Mission: Humanity’s First Visit to Our Star , 2016 .
[17] H. Korth,et al. MESSENGER X-ray observations of magnetosphere–surface interaction on the nightside of Mercury , 2016 .
[18] Thomas E. Moore,et al. Magnetospheric Multiscale Overview and Science Objectives , 2016 .
[19] S. Solomon,et al. Comprehensive survey of energetic electron events in Mercury's magnetosphere with data from the MESSENGER Gamma‐Ray and Neutron Spectrometer , 2015 .
[20] William E. McClintock,et al. Mercury’s seasonal sodium exosphere: MESSENGER orbital observations , 2015 .
[21] T. Kimura,et al. Extreme Ultraviolet Radiation Measurement for Planetary Atmospheres/Magnetospheres from the Earth-Orbiting Spacecraft (Extreme Ultraviolet Spectroscope for Exospheric Dynamics: EXCEED) , 2014 .
[22] Iku Shinohara,et al. The ERG Science Center , 2014, Earth, Planets and Space.
[23] David G. Sibeck,et al. Science Objectives and Rationale for the Radiation Belt Storm Probes Mission , 2012, Space Science Reviews.
[24] D. Müller,et al. Solar Orbiter , 2012, Solar Physics.
[25] Mehdi Benna,et al. MESSENGER Observations of Extreme Loading and Unloading of Mercury’s Magnetic Tail , 2010, Science.
[26] William E. McClintock,et al. MESSENGER Observations of Mercury’s Exosphere: Detection of Magnesium and Distribution of Constituents , 2009, Science.
[27] S. Solomon,et al. Mercury's Exosphere During MESSENGER's Second Flyby: Detection of Magnesium and Distinct Distributions of Neutral Species , 2009 .
[28] S. Solomon,et al. Mercury's Exosphere: Observations During MESSENGER's First Mercury Flyby , 2008, Science.
[29] S. Solomon,et al. MESSENGER Mission Overview , 2007 .
[30] H. Yamakawa,et al. BepiColombo Mercury magnetospheric orbiter design , 2005 .
[31] Helmut Lammer,et al. Surface-Exosphere-Magnetosphere System Of Mercury , 2005 .
[32] H. Rauer,et al. Comet-like tail-formation of exospheres of hot rocky exoplanets: Possible implications for CoRoT-7b , 2011 .
[33] D. Müller,et al. Solar Orbiter , 2012, Solar Physics.
[34] Kazushi Asamura,et al. Scientific objectives and instrumentation of Mercury Plasma Particle Experiment (MPPE) onboard MMO , 2010 .
[35] Go Murakami,et al. yThe Mercury sodium atmospheric spectral imager for the MMO spacecraft of Bepi-Colombo , 2010 .
[36] Hideaki Kawano,et al. Magnetic field investigation of Mercury's magnetosphere and the inner heliosphere by MMO/MGF , 2010 .
[37] Hideo Ohashi,et al. Development of the Mercury dust monitor (MDM) onboard the BepiColombo mission , 2010 .
[38] Hiroshi Matsumoto,et al. The Plasma Wave Investigation (PWI) onboard the BepiColombo/MMO: First measurement of electric fields, electromagnetic waves, and radio waves around Mercury , 2010 .
[39] Johannes Benkhoff,et al. BepiColombo—Comprehensive exploration of Mercury: Mission overview and science goals , 2010 .
[40] Hiroshi Yamakawa,et al. The BepiColombo/MMO model payload and operation plan , 2004 .