All Stories

  1. Science objectives of the MMX rover
  2. MASCOT’s in situ analysis of asteroid Ryugu in the context of regolith samples and remote sensing data returned by Hayabusa2
  3. The ESA Hera Mission: Detailed Characterization of the DART Impact Outcome and of the Binary Asteroid (65803) Didymos
  4. ESA's Cometary Mission Rosetta—Re‐Characterization of the COSAC Mass Spectrometry Results
  5. COSAC's Only Gas Chromatogram Taken on Comet 67P/Churyumov‐Gerasimenko
  6. Martian moons exploration MMX: sample return mission to Phobos elucidating formation processes of habitable planets
  7. The MMX rover: performing in situ surface investigations on Phobos
  8. Lander Operations
  9. MASCOT—A Mobile Lander On-board the Hayabusa2 Spacecraft—Operations on Ryugu
  10. In situ science on Phobos with the Raman spectrometer for MMX (RAX): preliminary design and feasibility of Raman measurements
  11. Science operation plan of Phobos and Deimos from the MMX spacecraft
  12. GAUSS - genesis of asteroids and evolution of the solar system
  13. AMBITION – comet nucleus cryogenic sample return
  14. The MASCOT lander aboard Hayabusa2: The in-situ exploration of NEA (162173) Ryugu
  15. Micro- and nanolander on the surface of Ryugu – Commonalities, differences and lessons learned for future microgravity exploration
  16. The process for the selection of MASCOT landing site on Ryugu: Design, execution and results
  17. Key Technologies and Instrumentation for Subsurface Exploration of Ocean Worlds
  18. Towards New Comet Missions
  19. Images from the surface of asteroid Ryugu show rocks similar to carbonaceous chondrite meteorites
  20. The search campaign to identify and image the Philae Lander on the surface of comet 67P/Churyumov-Gerasimenko
  21. A radar package for asteroid subsurface investigations: Implications of implementing and integration into the MASCOT nanoscale landing platform from science requirements to baseline design
  22. Development and testing of a pyro-driven launcher for harpoon-based comet sample acquisition
  23. Direct observations of asteroid interior and regolith structure: Science measurement requirements
  24. European component of the AIDA mission to a binary asteroid: Characterization and interpretation of the impact of the DART mission
  25. Science exploration and instrumentation of the OKEANOS mission to a Jupiter Trojan asteroid using the solar power sail
  26. MASCOT2 – A small body lander to investigate the interior of 65803 Didymos′ moon in the frame of the AIDA/AIM mission
  27. MASCOT – a Mobile Lander on-board Hayabusa2 Spacecraft – Status and Operational Concept for the Asteroid Ryugu
  28. The CONSERT operations planning process for the Rosetta mission
  29. Rosetta Lander - Philae: Operations on comet 67P/Churyumov-Gerasimenko, analysis of wake-up activities and final state
  30. The Close-Up Imager Onboard the ESA ExoMars Rover: Objectives, Description, Operations, and Science Validation Activities
  31. Decay of COSAC and Ptolemy mass spectra at comet 67P/Churyumov-Gerasimenko
  32. Small spacecraft in small solar system body applications
  33. Editorial of the special issue – “Rosetta and Philae at comet 67P/Churyumov-Gerasimenko”
  34. Rosetta Lander – Landing and operations on comet 67P/Churyumov–Gerasimenko
  35. Rosetta lander Philae – Landing performance and touchdown safety assessment
  36. Rosetta lander Philae: Flight Dynamics analyses for landing site selection and post-landing operations
  37. The CONSERT operations planning process for the Rosetta mission
  38. The Philae Lander: Science planning and operations
  39. The Camera of the MASCOT Asteroid Lander on Board Hayabusa 2
  40. Science case for the Asteroid Impact Mission (AIM): A component of the Asteroid Impact & Deflection Assessment (AIDA) mission
  41. Rosetta Lander: On-Comet Operations Execution and Recovery after the Unexpected Landing
  42. MASCOT—The Mobile Asteroid Surface Scout Onboard the Hayabusa2 Mission
  43. Asteroid Impact and Deflection Assessment mission
  44. Organic compounds on comet 67P/Churyumov-Gerasimenko revealed by COSAC mass spectrometry
  45. The landing(s) of Philae and inferences about comet surface mechanical properties
  46. Rosetta Lander – Philae: Landing preparations
  47. Spacecraft for Hypervelocity Impact Research – An Overview of Capabilities, Constraints and the Challenges of Getting There
  48. Experimental Investigations of the Comet Lander Philae Touchdown Dynamics
  49. COSAC prepares for sampling and in situ analysis of cometary matter from comet 67P/Churyumov–Gerasimenko
  50. Rosetta Lander: On-Comet Operations Preparation and Planning
  51. Landing on small bodies: From the Rosetta Lander to MASCOT and beyond
  52. Rosetta Lander—After seven years of cruise, prepared for hibernation
  53. GETEMME—a mission to explore the Martian satellites and the fundamentals of solar system physics
  54. Future Mars geophysical observatories for understanding its internal structure, rotation, and evolution
  55. Lunar Net—a proposal in response to an ESA M3 call in 2010 for a medium sized mission
  56. In situ analysis of Europa ices by short-range melting probes
  57. MarcoPolo-R near earth asteroid sample return mission
  58. Hopper concepts for small body landers
  59. How to survive a Lunar night
  60. Surface elements and landing strategies for small bodies missions – Philae and beyond
  61. The putative mechanical strength of comet surface material applied to landing on a comet
  62. Melting and Sublimation of Planetary Ices Under Low Pressure Conditions: Laboratory Experiments with a Melting Probe Prototype
  63. A small mission for in situ exploration of a primitive binary near-Earth asteroid
  64. ESSC-ESF Position Paper—Science-Driven Scenario for Space Exploration: Report from the European Space Sciences Committee (ESSC)
  65. LunarEX—a proposal to cosmic vision
  66. Triple F—a comet nucleus sample return mission
  67. MARCO POLO: near earth object sample return mission
  68. Capabilities of Philae, the Rosetta Lander
  69. The Rosetta Lander (“Philae”) Investigations
  70. Access to glacial and subglacial environments in the Solar System by melting probe technology
  71. Preliminary studies concerning subsurface probes for the exploration of icy planetary bodies
  72. Rosetta Lander—Philae: Implications of an alternative mission
  73. Current status and scientific capabilities of the Rosetta lander payload
  74. Mars 96 landers planetary protection implementation and planetary protection specifications for the upcoming ESA planetary missions
  75. Rosetta lander in situ characterization of a comet nucleus
  76. The COSAC experiment on the Lander of the ROSETTA mission
  77. Heating of dust particles enclosed in icy material
  78. The Strength of Cometary Surface Material: Relevance of Deep Impact Results for Philae Landing on a Comet