Planetary Science Division Update

Similar documents
NASA Planetary Science Programs

NASA s PLANETARY PROGRAMS AND TECHNOLOGY 15 th International Planetary Probe Workshop

Overview of Lunar Science Objectives. Opportunities and guidelines for future missions.

NASA s Planetary Science Program Status

James L. Green Director, Planetary Science NASA

Planetary Science Division Status Report

Jim Green Director, Planetary Science March 19, Eris

Planetary Science Update. David Schurr Deputy Director Planetary Science July 23, 2014

Planetary Science Division Status Report

Planetary Science Division Status Report

Planetary Science Division Status Report

PLANETARY SCIENCE DIVISION

Planetary Science Division Status Report

The Genealogy of OSIRIS-REx Asteroid Sample Return Mission

Strategic Missions in Planetary Science

Planetary Protection at NASA: Overview and Status

SMD Science Education Status

A Survey of the Planets Earth Mercury Moon Venus

Planetary Science Division Status Report

Planetary Radar and Radio Astronomy

Survey of the Solar System. The Sun Giant Planets Terrestrial Planets Minor Planets Satellite/Ring Systems

Venus: NASA HQ Perspectives

Theme 2: Outer Solar System Tracing the origin of the Solar System

Planetary Science and Mars Program. James L. Green Director, Planetary Science NASA May 20,

Low Cost Breakthroughs in Planetary Atmospheres and Interior Structures With Precision-Radio-Equipped Small Spacecraft

ESA s Juice: Mission Summary and Fact Sheet

InSight Spacecraft Launch for Mission to Interior of Mars

Planetary Science Division Status Report

Robotic Lunar Exploration Scenario JAXA Plan

ASTR 380 Possibilities for Life in the Outer Solar System

LRO Lunar Reconnaissance Orbiter

Aerocapture Implementation of NASA s Neptune Orbiter With Probes Vision Mission

Lunar Discovery and Exploration program

Part 4: Exploration 1

Jim Green Director, Planetary Science May 8, Eris

The Solar System. Tour of the Solar System

Planetary Science Update & Perspectives on Venus Exploration

Last Class. Today s Class 11/28/2017

SOLAR SYSTEM B Division

Astronomers Universe. More information about this series at

Scope and Sequence: Semester I

Solar System Exploration

Jupiter & Saturn. Moons of the Planets. Jupiter s Galilean satellites are easily seen with Earth-based telescopes. The Moons

Our Planetary System. Chapter 7

ASTR 4800: Space Science - Practice & Policy Today s Topic: Science Goes to the Moon & Planets. Next class: Visit by Richard Truly, former NASA

Administrative Changes

Report from the Small Bodies Assessment Group (SBAG) to the Planetary Science Advisory Committee

NEW HORIZONS 2. New Horizons: A Journey to New Frontiers

Modeling the Orbits of the Outer Planets

Last Class. Jupiter. Today s Class

7. Our Solar System. Planetary Orbits to Scale. The Eight Planetary Orbits

Solar System. The Solar System. Nebular animation. Planets drawn to scale. Mercury. Mariner 10. Chapter 22 Pages

Scientific Satellite Applications for Exploration of Outer Space

Cassini s Grand Finale Science Highlights & End of Mission

CHAPTER 6. The Solar System

New Horizons Beyond Pluto: The Ultima Thule Flyby

Understanding the Solar System How did it begin? How is it evolving? Heidi B. Hammel Space Science Institute Boulder, CO

Report to Planetary Science Decadal Survey Primitive Bodies Panel. Perspectives from the Previous PBP Experience,

1. GENERAL IMPRESSION OF DECADAL RECOMMENDATIONS

Outline. Characteristics of Jupiter. Exploration of Jupiter. Data and Images from JUNO spacecraft

New Horizons Pluto/KBO Mission. Hal Weaver The Johns Hopkins University Applied Physics Laboratory

Life and habitability in the Solar System and beyond: the Roadmap

Chapter 7 Our Planetary System

Juno. Fran Bagenal University of Colorado

SBAG GOALS Origin of the Solar System Theme

Astronomy November, 2016 Introduction to Astronomy: The Solar System. Mid-term Exam 3. Practice Version. Name (written legibly):

DPS 48/EPSC 11 Meeting Pasadena, CA October, 2016

Exploring our Solar System and Beyond

Argo. Voyage Through the Outer Solar System. Presentation to SBAG 12 January Candice Hansen (JPL) & Heidi B. Hammel (Space Science Institute)

Chapters 7&8. ASTRONOMY 202 Spring 2007: Solar System Exploration. Class 21: Solar System [3/12/07] Announcements.

Solar System Advisory Panel Roadmap for Solar System Research Recommendations to STFC

Life in the Outer Solar System

HEOMD Overview March 16, 2015

UNIT 3: Chapter 8: The Solar System (pages )

Planetary Science Division Status Report

Outer Solar System. Jupiter. PHY outer-solar-system - J. Hedberg

NASA s Planetary Science Program Overview. James L. Green, Director Planetary Science Presenta6on to the SBAG January 9, 2014

ASTR 200 : Lecture 6 Introduction to the Solar System Pearson Education Inc., publishing as Addison-Wesley

Venus Bridge: A Smallsat Program Through the Mid-2020s

Jupiter Icy Moons Orbiter

Astronomy. physics.wm.edu/~hancock/171/ A. Dayle Hancock. Small 239. Office hours: MTWR 10-11am. Page 1

You are here! The Solar System! Jo-Anne Brown

Phobos & Deimos Update

NASA Lunar Science Activities. Lunar Science and Exploration

What is Earth Science?

A Look at Our Solar System: The Sun, the planets and more. by Firdevs Duru

HST Observations of Planetary Atmospheres

Moons of Sol Lecture 13 3/5/2018

ESA Science Programme and the Ice Giants study

Overview of Solar System

Object Type Moons Rings Planet Terrestrial none none. Max Distance from Sun. Min Distance from Sun. Avg. Distance from Sun 57,910,000 km 0.

Planetary magnetospheres

New Horizons Mission Update

Ross (née, CAESAR) Presentation to SBAG. Beau Bierhaus, Ben Clark, Josh Hopkins 18 January 2018

ESSE Payload Design. 1.2 Introduction to Space Missions

Scott Bolton OPAG February 1, 2016

Chapter 11 Jovian Planet Systems. Comparing the Jovian Planets. Jovian Planet Composition 4/10/16. Spacecraft Missions

PLANETARY SCIENCE DIVISION STATUS

Moonrise. Bonnie Meinke, PhD. the surprisingly diverse array of moons in our solar system. Hubble Science Briefing May 1, 2014

solar system outer planets Planets located beyond the asteroid belt; these are known as the gas giants. CELESTIAL BODIES

Transcription:

Planetary Science Division Update Jim Green NASA, Planetary Science Division September 12, 2017 Presentation at CAPS

Planetary Science Missions Events 2016 March Launch of ESA s ExoMars Trace Gas Orbiter * Completed July 4 Juno inserted in Jupiter orbit September 8 Launch of Asteroid mission OSIRIS REx to asteroid Bennu September 30 Landing Rosetta on comet CG October 19 ExoMars EDM landing and TGO orbit insertion 2017 January 4 Discovery Mission selection announced February 9-20 - OSIRIS-REx began Earth-Trojan search April 22 Cassini begins plane change maneuver for the Grand Finale August 21 Total Solar Eclipse across the US September 15 Cassini end of mission at Saturn September 22 OSIRIS-REx Earth flyby 2018 May 5 - Launch InSight mission to Mars August OSIRIS-REx arrival at Bennu October Launch of ESA s BepiColombo November 26 InSight landing on Mars 2019 January 1 New Horizons flyby of Kuiper Belt object 2014MU69

Discovery Program NEO characteristics: NEAR (1996-1999) Mars evolution: Mars Pathfinder (1996-1997) Lunar formation: Lunar Prospector (1998-1999) Nature of dust/coma: Stardust (1999-2011) Solar wind sampling: Genesis (2001-2004) Comet diversity: CONTOUR (2002) Mercury environment: MESSENGER (2004-2015) Comet internal structure: Deep Impact (2005-2012) Lunar Internal Structure GRAIL (2011-2012) Main-belt asteroids: Dawn (2007-TBD) Exoplanets Kepler (2009-TBD) Lunar surface: LRO (2009-TBD) ESA/Mercury Surface: Strofio (2018) Mars Interior: InSight (2018) Trojan Asteroids: Lucy (2021) Metal Asteroids: Psyche (2022)

NEW Discovery Missions Launch in 2022 Launch in 2021 14

New Frontiers Program 1 st NF mission New Horizons: Pluto-Kuiper Belt 2 nd NF mission Juno: Jupiter Polar Orbiter 3 rd NF mission OSIRIS-REx: Asteroid Sample Return Launched January 2006 Flyby July 14, 2015 PI: Alan Stern (SwRI-CO) Launched August 2011 Arrived July 4, 2016 PI: Scott Bolton (SwRI-TX) Launched Sept. 8, 2016 PI: Dante Lauretta (UA) Gravity Assist Sept. 22, 2017 Arrives at Bennu Aug 2018

New Horizons Next

New Horizons MU69 Next KBO Target Next Flyby January 1, 2019 NASA, NH team, and the IAU Will be working together to Name MU69 this year.

Stellar Occultation of MU69 MU69 June 3, 2017 July 10, 2017 July 17, 2017

Juno

JunoCam - Primarily for outreach, but with considerable scientific contribution All processed results are available on the Mission Juno site

Electron Beams Power Auroras Jupiter Earth Earth s Inverted V s above Discrete Auroral arcs Frank et al., 1971

OSIRIS-REx Return and analyze a sample of Bennu s surface Map the asteroid & document the sample site Measure the Yarkovsky effect Gravity Assist September 22, 2016

New Frontiers 4 AO Investigations (listed without priority): Comet Surface Sample Return Enceladus Lunar South Pole-Aitken Basin Sample Return Saturn Probe Titan Trojan Tour and Rendezvous Venus In Situ Explorer Release of final AO... December 9, 2016 Electronic Proposal Submittal Deadline... April 28, 2017 Step-1 Selections Announced (target)... November 2017 Phase A Concept Study Reports due... December 2018 Down-selection for Flight (target)... July 2019 Launch Readiness Date... NLT Dec. 31, 2025

Cassini s Grand Finale

Grand Finale Orbits Have Started EOM September 15

Where are the Small Moons?

High Resolution Images of the Moons

Final Orbits Science Summary Saturn internal structure Gravitational & Magnetic Fields Ring mass (currently uncertain by 10x) Address age of main rings Saturn s ionosphere, innermost radiation belts & inner D ring particles Highest resolution main ring observations First Active Radar of the Rings Highest resolution Saturn polar observations and aurora Saturn atmospheric structure & composition Cassini Saturn science complements that from Juno mission to Jupiter

Europa Clipper Overview Conduct 45 low altitude flybys with lowest 25 km (less than the ice crust) and a vast majority below 100 km to obtain global regional coverage Launch NET 2022 Science Objective Ice Shell & Ocean Composition Geology Recon Description Characterize the ice shell and any subsurface water, including their heterogeneity, and the nature of surface-ice-ocean exchange Understand the habitability of Europa's ocean through composition and chemistry. Understand the formation of surface features, including sites of recent or current activity, and characterize high science interest localities. Characterize scientifically compelling sites, and hazards for a potential future landed mission to Europa

Curiosity at Gale Crater Curiosity Lands August 6, 2012 5 year Anniversary

Interior Exploration using Seismic Investigations, Geodesy and Heat Transport To Be Launched May 2018

Seeking Signs of Life: Mars 2020 Rover Conduct rigorous in situ science Geologically diverse site of ancient habitability Enable the future Returnable cache of samples Coordinated, nested context and fine-scale measurements LCC: $2.4B RY Critical ISRU and technology demonstration required for future Mars exploration

Final Mars 2020 Candidate Landing Sites Final site selection targeted for end of 2018 COLUMBIA HILLS Ancient hot springs of carbonate, sulfate, and silica-rich material Potential biosignatures identified Previously explored by Spirit rover NE SYRTIS Extremely ancient volcanic and hydrothermal environments Large diversity of hydrated minerals Potential subsurface habitability JEZERO Ancient lava and water deposition region Evidence for hydrous and clay minerals 29

MARS EXPLORATION PROGRAM Decadal Survey science goals Determine if life ever arose on Mars Understand the processes and history of climate Determine the evolution of the surface and interior Progress report Making breakthroughs in Mars science Gaining knowledge in preparation of future Mars exploration Current missions are healthy and performing well Technology investments are addressing pivotal issues for future Mars exploration architectures Our future architectures should adapt to evolving Mars exploration Existing program capabilities Multiple international interests Multiple commercial interests Investigating new, leaner Mars architectures to respond to global changes in Mars exploration

NOTIONAL MSR TIMELINE

TWO LANDER CONCEPTS 2017 Highly Integrated Concept Evolved 2011 Decadal Concept Propulsive Platform Lander (PPL) Concept Packaged in MSL 4.5m Aeroshell Common Attributes Identical cruise and entry architecture ~ 10 km landing ellipse ~ 900-1000 kg landed useful mass Accommodates ~ 600 kg MAV and Fetch Rover Skycrane-Delivered Platform Concept Packaged in MSL 4.5m Aeroshell Propulsive Platform Lander Concept Deployed Skycrane-Delivered Platform Concept Deployed Two concepts that leverage Mars program legacy system capabilities

NOTIONAL SAMPLE RETURN ORBITER Design for Orbital Rendezvous & Fast Sample Return Rendezvous & Capture Containment and Earth Planetary Protection Communication Relay Support for Surface Ops and Critical Events Return to Earth, either via Direct return to Earth Deliver to cis-lunar space for human-assisted returns Implementation Options NASA provided Partner provided

PARTNERSHIP OPPORTUNITIES International Enduring scientific/technical and programmatic interests Multiple space agencies headed to Mars Growing commercial interest in Mars Potential to leverage commercial offerings of capability Exploration benefits from MSR Feed-forward into preparation, planning and development First round trip demonstration Samples inform environmental uncertainties [biological, physical, toxicity] Potential opportunity for early leverage of cis-lunar capabilities

NEXT STEPS Continue pre-formulation studies on SRL concepts Explore additional opportunities for partnership Continue and expand technology maturation efforts Engage ESA and other international partner interest in a joint study on approaches for collaborative MSR MSL Gale Crater Mount Sharp Soil Layers

Mars orbiter Mission Studies Completed 2015 MEPAG s Next Orbiter Science Analysis Group Uranus and Neptune (Ice Giants) system missions 2017 NASA science definition team report Europa lander 2017 NASA science definition team report Venus orbiter and lander (Venera-D) 2017 joint U.S.-Russian science definition team report

CAPS Priority Areas Candidates for Large or Medium Class Mission Studies (Unprioritized) Venus exploration missions Lunar science missions Additional concepts beyond the Venera-D orbiter and lander Understanding interior processes and polar volatiles Mars sample-return next-step missions Mission elements beyond Mars 2020 necessary for second and third phases of a Mars sample-return campaign Mars medium-class missions Dwarf planet missions Io science (NEW FRONTIERS FIVE) Multiple mobile explorers, polar explorers, & life-detection. Investigations responsive to new discoveries Large- & medium-class mission concepts to Ceres, Pluto, Triton Reexamine mission to Io Saturn system missions Dedicated space telescope for solar system science Affordable, large strategic missions that visit multiple targets Dynamic phenomena on planetary bodies

Planetary Science Deep Space Small Satellite Studies Concept studies to scope science capability and cost of small secondary missions 19 awards ($6 M investment over one year) Report out at LPSC in March 2018 Venus Valeria Cottini, CUVE - Cubesat UV Experiment Attila Komjathy, Seismicity Investigation on Venus Using Airglow Measurements Tibor Kremic, Seismic and Atmospheric Exploration of Venus (SAEVe) Christophe Sotin, Cupid's Arrow Moon Christophe Sotin (JPL) Cupid s Arrow spacecraft concept Jeff Plescia (Purdue) APEX spacecraft concept David Draper, Innovative Strategies for Lunar Surface Exploration Charles Hibbitts, Lunar Water Assessment, Transportation, and Resource Mission Noah Petro, Mini Lunar Volatiles (MiLUV) Mission Suzanne Romaine, CubeSat X-ray Telescope (CubeX) Timothy Stubbs, Bi-sat Observations of the Lunar Atmosphere above Swirls (BOLAS) Small Bodies Benton Clark, CAESAR: CubeSat Asteroid Encounters for Science and Reconnaissance Tilak Hewagama, Primitive Object Volatile Explorer (PrOVE) Jeffrey Plescia, APEX: Asteroid Probe Experiment Mars Anthony Colaprete, Aeolus - to study the thermal and wind environment of Mars Michael Collier, PRISM: Phobos Regolith Ion Sample Mission Robert Lillis, Mars Ion and Sputtering Escape Network (MISEN) David Minton, Chariot to the Moons of Mars Luca Montabone, Mars Aerosol Tracker (MAT) Icy Bodies and Outer Planets Kunio Sayanagi, SNAP: Small Next-generation Atmospheric Probe Robert Ebert, JUpiter MagnetosPheric boundary ExploreR (JUMPER)

Questions? Image by john doe