Phobos & Deimos Update

Similar documents
ISIS Impactor for Surface and Interior Science

SBAG Special Action Team Report: ARM Connections to Priority Small Body Science and Exploration Goals

Lunar Discovery and Exploration program

Phobos/Deimos State of Knowledge in Preparation for Future Exploration

Plans for an International Lunar Network

INTERNATIONAL PHOBOS/DEIMOS LANDING SITE WORKING GROUP

Exploring the Moon & Asteroids: A Synergistic Approach

The case for a mission to Mars' moon Phobos 2 October 2014, by Tim Reyes

Mars Program Re-Planning 2012

Planetary Protection at ESA Issues & Status

HEOMD Overview March 16, 2015

ESA Planetary Protection Update

COMMON THEMES IN PLANETARY SMALL BODIES RESEARCH (2018 UPDATE)

Technology Goals for Small Bodies

James L. Green Director, Planetary Science NASA

Analysis of Strategic Knowledge Gaps Associated with Potential Human Missions to the Martian System. Precursor Strategy Analysis Group (P-SAG)

Lunar Precursor Robotics Program

Results of the LEAG GAP-SAT 1 and 2. Examination of SKGs for a Moon first scenario for human exploration of the Solar System

The Genealogy of OSIRIS-REx Asteroid Sample Return Mission

Presentation to SBAG January 2016

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

SBAG GOALS Origin of the Solar System Theme

Deimos and Phobos as Destinations for Human Exploration

NASA Announces Mars 2020 Rover Payload to Explore the Red Planet as Never Before Mission Plans

InSight Spacecraft Launch for Mission to Interior of Mars

James Carpenter, Lunar Lander Office, Directorate of Human Spaceflight and Operations

PHOOTPRINT. An ESA mission study. previously: MMSR (Martian Moon Sample Return)

Status of Outer Planet Flagship Mission Studies. Curt Niebur June 8, 2007 Planetary Science Subcommittee Mtg

Venus: NASA HQ Perspectives

HERA MISSION & CM16 lessons learned

NASA Planetary Science Programs

Mars Sample Return Mission

NASA s Solar System Exploration Research Virtual Institute (SSERVI)

Planetary Protection of Outer Solar System bodies - PPOSS -

Introduction to planetary protection and expectations from review

Expanding Science with SmallSats/CubeSats

2024 Mars Sample Return Design Overview

Where you can put your asteroid

Strategic Knowledge Gaps:

JUpiter Icy Moons Explorer (JUICE) Status report for OPAG. N. Altobelli (on behalf of O. Witasse) JUICE artist impression (Credits ESA, AOES)

Strategic Knowledge Gaps:

Planetary Protection Considerations For Mars 2020

NASA: BACK TO THE MOON

Mars Update. Presented by NASA/JPL Solar System Educator Don W. Brown

Asteroid Sample Return and the Path to Exploration of Near-Earth Space* By Dante S. Lauretta 1

JUICE/Laplace Mission Summary & Status

Report of the Venera-D Joint Science Definition Team: "Together to Venus"

Enabling Interplanetary Small Spacecraft Missions

Quasi-Satellite Orbits around Deimos and Phobos motivated by the DePhine Mission Proposal

Welcome! To The Restructured, Reconfigured, NASA Advisory Council!

A Lander for Marco Polo

1. GENERAL IMPRESSION OF DECADAL RECOMMENDATIONS

The Main Points. Asteroids. Lecture #22: Asteroids 3/14/2008

Mars Exploration Program (MEP) Update

NASA s Planetary Science Program Status

Science Scenario Modeling

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

Lowell II, Candor Chasma Base Station Mission Backstory

UK lunar exploration: Current activities and future possibilities

Low Cost Enceladus Sample Return Mission Concept

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

From VOA Learning English, this is Science in the News. I m June Simms.

The NEO problem: activities in Russia

Asteroid Redirect Mission Update

History of Spaceflight

The Path to Mars. December Matthew Duggan. Copyright 2010 Boeing. All rights reserved.

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

Aerocapture Implementation of NASA s Neptune Orbiter With Probes Vision Mission

Executive Summary (ES)

Lunar Flashlight Project

LAB 2 HOMEWORK: ENTRY, DESCENT AND LANDING

Mars rover Opportunity signs off after 15 years

Planetary Science Decadal Survey

Planetary Science Division Status Report

Orbital Dynamics and Impact Probability Analysis

Mission Architecture Options For Enceladus Exploration

Robotic Missions of Russian Lunar Program

Hermes Experiment Opportunities

Mars Exploration Script

Flight S4-002 Status of Hayabusa2: Asteroid Sample Return Mission to C-type Asteroid Ryugu. Yuichi Tsuda, Makoto Yoshikawa (ISAS/JAXA)

E X O M A R S. The ESA/NASA ExoMars Programme

Jim Green Director, Planetary Science March 19, Eris

Human Lunar Exploration Mission Architectures

Mars Sample Return (MSR) Mission BY: ABHISHEK KUMAR SINHA

The time period while the spacecraft is in transit to lunar orbit shall be used to verify the functionality of the spacecraft.

LRO Lunar Reconnaissance Orbiter

Impact Mission (AIM) ESA s NEO Exploration Precursor. Ian Carnelli, Andrés Gàlvez Future Preparation and Strategic Studies Office ESA HQ

Payloads. Andrew J. Ball Short Course on Small Satellites, IPPW-15 Boulder, CO, 9 June 2018

ORION/MOONRISE: JOINT HUMAN-ROBOTIC LUNAR SAMPLE RETURN MISSION CONCEPT

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

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

An Enhanced Role for Scientific CubeSats. Science Mission Directorate

Robotic Lunar Exploration Scenario JAXA Plan

Upgraded Program of Russian Lunar Landers: Studying of Lunar Poles

Technology Reference Studies

NASA Lunar Science Activities. Lunar Science and Exploration

IAA Pre-Summit Conference, Washington, DC, 9 January 2014

Feasible Mission Designs for Solar Probe Plus to Launch in 2015, 2016, 2017, or November 19, 2008

Analogue Mission Simulations

Jim Green Director, Planetary Science May 8, Eris

Transcription:

Phobos & Deimos Update Pascal Lee 1,2,3 1 Mars Institute, 2 SETI Institute, 3 NASA Ames Research Center 7 th SBAG Meeting 10-11 July 2012 Pasadena, CA

!"#$%&' ()%*%&' ++',-.'/0+/' (1'2""' Credit: NASA /'

Phobos and Deimos Science Merit 40 yrs into spacecraft exploration era, Phobos & Deimos are still Vexing Mysteries. Origin/Nature Unknown: Highest priority Small Body Science Goal (1st & 2 nd Phobos-Deimos Conf. consensus). - Captured Asteroids! D-types? Gone-Types? Wow! - Remnants of Mars s Formation? Wow! - Reaccreted Mars Ejecta? Wow! - Broken-Up & Reassembled Products Thereof? Wow Wee! - Related to Each Other? Wow! At Crossroads of Central Issues in Solar System & Planetary Science (Decadal Survey) - Formation & Evolution of the Solar System - Formation and Evolution of Planetary Satellites - Formation and Evolution of Small Bodies (Themselves + Intercepted Asteroidal Drift) - Impact Cratering (Accretion, Break-Up & Reassembly, Mars Ejecta, etc.) - Formation and Evolution of Mars (Mars Satellites + Intercepted Mars Ejecta) - Origin and Evolution of Life (Organics + Intercepted Mars Ejecta, etc.) Mars Ejecta in Regolith: Highest priority Mars Science Goal. Mars fraction may offer keys to Mars, incl. life (Lee et al. 2005, Melosh et al. 2012). Sampling Phobos and Deimos: Need representative samples of bulk. Need Lander. ++',-.'/0+/' (1'2""' 3'

Phobos and Deimos Exploration Merit Phobos & Deimos: Attractive Targets of Opportunity in Mars Orbit. Humans may Visit for Much Less Cost than Mars! Mars Sooner. Logical Step Between NEOs and Mars. Phobos/Deimos could play Key Roles in Mars Architectures (TBD). H 2 O Content Unknown: Could be up to 30% by Volume! Robotic Precursor: Science Merit + MSR Precursor + PSAG SKGs. Also Planetary Protection Role(s). NASA s Priority at Mars is Mars. Agreed. This is about Mars, Only SBs Too. E/PO Merit American Discoveries! Targeted by Russia, Europe, & China. Exciting Destinations: A Trip to Phobos/Deimos is a Trip to Mars + SBs. ++',-.'/0+/' (1'2""' 4'

Phobos-Grunt 2 + Phootprint Investigation Into Failure of Phobos-Grunt Space Radiation! Unexpected S/C Dual Flight Computer Reboot! S/C Went Into Safe Mode! Waited for Ground Commands in X Band! But X Band Not Usable (Designed for Cruise Phase Only)! Loss of S/C. Phobos-Grunt 2 Roscosmos + Russian Academy of Science have decided to Re-Fly. Viewed as Highest Priority: Inherent Science Merit, High TRL, Step to MSR. Targeted Launch Window: 2020 Simpler & Lighter S/C. Fewer payload elements. No Chinese Probe. International Partners Sought. Roscosmos is approaching ESA. ESA Phootprint ESA announced new Phobos SR mission option for 2022 at Mars Concepts & Approaches Meeting. ++',-.'/0+/' (1'2""' 5'

!"#$"#%"#&'()*+'+*,'-+.#'/012".+3"*'%+4*'#5/1#'6".'789:;787<' -""*' -+.#' /0+5' 2-6789.%*:;<*#="<' /0+>' 2-6789.%*:276?"<' @A%B7<&'+' /0+C' /0+F' /0+G' /0/0' /0/+' /0//' /0/3' /0/4' 2-678D"&%-<E":276?"<'!"#$%&'( )*+,$*$-.#(/.*( 0+1+2.,3+#4(./(!"#$*(5$6+(+2+3+#46( @A%B7<&'/' )7.5.6(&'( 8$*6(&'(

Concepts & Approaches for Mars Exploration 12-14 June 2012 Using Mars s Moons Session Lisano et al. Mars moon SRM concept. Colaprete et al. PCROSS Muscatello et al. Phobos & Deimos SRM ISRU Lee et al. Phobos & Deimos Lander/SRM: Science + PSAG SKGs Mazanek et al. Human Mission to Phobos & Deimos: Destination Mission Concept Report Sweetser Manned Base on Phobos First. Then Explore Mars. Panel Discussion For More Info: )HIJKKLLL1.I#1-&<71"?-K$""M6N&K$7<&E%6E"I=&/0+/K' ++',-.'/0+/' (1'2""' C'

National Aeronautics and Space Administration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ycle 2012-A Draft Human Spaceflight Architecture Team 8 NASA Internal Use Only Not for Distribution

K"3"*+2'="*$/15'6".'L?".5;L5+B'-+.#'Z4$4*45B'[1/.+3"*#' Capture into High-Mars Orbit (1-sol) 250 x 33,813 km Arrive (Day 0) Arrive Phobos (Day 4) Leave Phobos (Day 28) Explore 6 Distinct Sites Arrive Deimos (Day 36) Leave Deimos (Day 48) Explore 3 Distinct Sites Depart (Day 56) Operations timeline includes 3 days of contingency and several blocks of unplanned activities A?"F"#&'9,378'I%'\$4.$)2+.]'9^9',/M'4*$2^]'8^a7',+B'1/.4",' G/4%"#&'23,459'I%'\$4.$)2+.]'8^_',/M'4*$2^]'9^7`',+B'1/.4",' Phobos survey Science package Deimos survey Test EVA procedures Test payload deployment SEV anchoring & mobility anchoring methods Drilling operations Test payload HAT Cycle 2012-A Draft Human Collect Spaceflight initial Architecture samples Team In-situ Resource anchoring methods NASA Internal Use Only Not for Distribution Utilization 9 9

A./$).#".'+*,'G/#3*+3"*'LB*/.MB'X/B'P+I/+Y+B#'!"F"3$'1./$).#".'5"'A?"F"#'+*,'G/4%"#'$")2,' 1."W4,/'#4M*4b$+*5'.4#I'./,)$3"*'FB'+,,./##4*M' #5.+5/M4$'I*"Y2/,M/'M+1#'/+.2B'/*")M?'5"'4*6".%'?)%+*'%4##4"*',/#4M*^' X/B'#B*/.M4/#'/04#5'5"'2/W/.+M/'?)%+*'%4##4"*#'5"' $4#;2)*+.',/#3*+3"*#'+*,'K@>#D'4*$2),4*M&' N)%+*'./#/+.$?'+*,'M+4*4*M',//1;#1+$/' "1/.+3"*#D'#B#5/%#'./24+F4245BD'2"M4#3$#'+*,' %+4*5/*+*$/'/01/.4/*$/' A."04%45B'"1#D'#).6+$/'4*5/.+$3"*D'+*,'4*;#45)'./#").$/')324H+3"*'!"F"3$'1./$).#".#D'#%+22'F",B'#$4/*$/D'#+%12/'./5).*D'+*,'5.+*#45'#$4/*$/' Image Credit: NASA/GSFC/U. of Arizona Image Credit: NASA/AMA, Inc. HAT Cycle 2012-A Draft Human Spaceflight Architecture Team 10 NASA Internal Use Only Not for Distribution 10

Humans to Mars Orbit: Robotic Precursor to Phobos and Deimos What Type of Robotic Precursor? Goal A B C Humans to Mars Orbit Humans to Mars Surface Humans to Phobos and/or Deimos PSAG Strategic Knowledge Gap Orbital Particulate Environment in High Mars Orbit Risk of Potential Adverse Effects of Mars Dust Risk of Back Contamination to Earth by Potential Biohazards on Mars H 2 O availability in the martian system that could change highlevel architecture of future human surface missions. Geological, Compositional, and Geophysical Properties of Phobos and Deimos to design focused human-based science and engineering exploration. Physical conditions near and on Phobos and Deimos to reliably and safely carry out proximity and surface ops for human-based science and engineering. Flyby or Orbiter!! Lander In Situ Only!!!! Touch n Go SRM!!!! Lander In Situ + SRM ++',-.'/0+/'!!!!!! (1'2""' ++'

Phobos/Deimos: Next Steps Phobos/Deimos Working Group Focus group to review, quantify, and articulate rationale for Phobos & Deimos exploration, incl. traceability to Decadal Survey and PSAG SKGs. Report to NASA SBAG. Add Phobos/Deimos SRM as New Frontiers Option? Third International Conference on the Exploration of Phobos & Deimos. The Science, Robotic Reconnaissance, and Human Exploration of the Two Moons of Mars. NASA Ames Research Center (TBC) 13-15 March 2013 or 25-27 March 2013 (TBC) (44 th LPSC: 18-22 March 2013) Need to confirm with NASA HQ SMD & HEOMD Phobos (and Deimos) Book Publisher: Planetary & Space Science (PSS) Editors: J. Oberst, A. Zakharov, T. Duxbury, A. Ball Publication Date: July 2013. ++',-.'/0+/' (1'2""' +/'

++',-.'/0+/' (1'2""' +3'