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

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Transcription:

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

Inner Solar System Mercury Venus Earth Mars 0 moons 0 moons 1 moon 2 moons 2

Outer Solar System >67 >27 >14 >62 3

Earth s Moon: Our Celestial Partner 1. Why is Earth the only rocky planet with a substantial moon? 2. How does this benefit Earth? 3. How does this make the Earth suited for life? 4

Formation: a Giant Impact 5

Over time: Moon moves out in its Orbit, Earth s rotation slows Time 6

Over time: Moon s rotation slows until one side faces Earth at all times This is known as Tidal Locking Time Time it takes the Moon to rotate once on its axis = the time it takes to orbit Earth once 7

Benefits of Having the Moon Environmental Stability Tides Development of Human Civilization Calendars Meteor shield Axis Tilt Exploration stepping stone 8

Benefits of Having the Moon Environmental Stability Tides Circulate oceans, create tidal pools Meteor shield Moon takes many hits for Earth Axis Tilt Keeps the axial tilt stable over geologic time scales, stabilizing climate 9

Tidal pools 10

Meteor Shield Near Side Far Side 11

Axial Tilt 12

13

Mars has experienced big swings in tilt over short (~100,000 years) time scales 14

Big swings in tilt drastically affect seasons and climate Bigger tilt = hotter summers, colder winters = big shifts in ice caps Smaller tilt = less seasonal variation 15

The Moon keeps Earth s tilt stable over tens of millions of years Long term = tens of millions of years Short term = ~100,000 years 16

Benefits of Having the Moon Environmental Stability Tides Development of Human Civilization Calendars Meteor shield Exploration stepping stone Axis Tilt 17

Benefits of Having the Moon Development of Human Civilization Lunar calendars were used by many ancient civilizations Calendars Allows humans to test space technologies close to home Exploration stepping stone 18

Benefits of the Moon Tides: regular schedule of water flow (tidal pool). Help circulate oceans Meteor shield: takes a lot of hits for us Maintains axial tilt: Our seasons and climates are stable Calendars: benefits civilization Stepping Stone for Human Exploration Our Moon gives us a stable environment conducive to the development and long term survival of life 19

Moons across the Solar System Do other moons provide stability for life? 20

Inner Solar System Mercury Venus Earth Mars 21

Inner Solar System Mercury Venus Earth Mars 0 moons 0 moons 1 moon 2 moons 22

Outer Solar System 23

Outer Solar System >67 >27 >14 >62 24

25

26

Are any of these worlds stable enough? Stability our Moon provides: 1. Circulation of water 2. Shield from impacts 3. Stable climate Earth already has: 1. Shield from radiation: Atmosphere Magnetosphere 2. Water 3. Energy from Sun Internal heat 27

Atmosphere Hazy atmosphere Provides rain (liquid methane!) Protects from impacts Protects from certain radiation Stabilizes Climate Saturn s moon Titan 28

Magnetic Field Protects against harsh radiation Ganymede has an intrinsic magnetic field (like Earth) Some other moons have induced fields due to their planet s field Jupiter s moon Ganymede 29

Internal Heat produced by gravitational tug of planet Jupiter s Io Creates geologically active surface: Volcanoes Geysers Evolving surfaces Jupiter s Europa Saturn s Enceladus Neptune s Triton 30

Ideal candidates? Moon Enceladus Titan Europa Io Ganymede Internal Heat Triton? Moon Radiation Shield Ice shell Atmosphere, induced Mag field Ice shell, induced Mag field induced Mag field Intrinsic Mag field Water small Geologic activity Geysers! Geysers? Geysers? volcanoes geysers Planet Earth Everything! Mars small Tiny atmosphere small 31

Ideal candidates? Moon Enceladus Titan Europa Io Ganymede Internal Heat Triton? Moon Radiation Shield Ice shell Atmosphere, induced Mag field Ice shell, induced Mag field induced Mag field Intrinsic Mag field Water small Geologic activity Geysers! Geysers? Geysers? volcanoes geysers Planet Earth Everything! Mars small Tiny atmosphere small 32

Ideal candidates? Moon Enceladus Titan Europa Io Ganymede Internal Heat Triton? Moon Radiation Shield Ice shell Atmosphere, induced Mag field Ice shell, induced Mag field induced Mag field Intrinsic Mag field Water Too Cold small Geologic activity Geysers! Geysers? Geysers? volcanoes geysers Planet Earth Everything! Mars small Tiny atmosphere small 33

The perfect combination: 1. Protection from radiation 2. Protection from impact 3. Stable climate 4. Warm enough for liquid water Jupiter s Europa Saturn s Enceladus 34

Internal Heat Global subsurface ocean 35

Saturn s Enceladus Small subsurface ocean at south pole vents to surface via geysers 36

Moons are harbingers of Life Earth s Moon helps maintain Earth s lifefriendly stable environment Outer solar system moons create small pockets of habitability safely tucked away under ice 37

As we continue our search for life elsewhere: Should we adjust our definition of Another Earth to include Another Moon? Should we be more concerned about exploring our own Europa? 38

Resources More general information about moons: http://en.wikipedia.org/wiki/natural_satellite Amazing Space: Teaching Tools: Solar System http://amazing-space.stsci.edu/eds/tools/topic/solarsystem.php Amazing Space: Myths vs. realities: Solar system http://amazingspace.stsci.edu/eds/overviews/myths/solar_system.php HubbleSite: Hubble Space Telescope Sees Evidence of Water Vapor Venting off Jovian Moon http://hubblesite.org/newscenter/archive/releases/2013/55/ 39

Glossary 1. Planetesimal: solid objects thought to exist in protoplanetary disks. The building blocks of planets, usually >1 km in size. 2. Giant Impact Hypothesis: the idea that the Earth- Moon system was created when a Mars-sized object impacted proto- Earth. The planetary science community believes this is the best explanation of how the Moon formed. 3. Tidal lock: occurs when the one side of an astronomical body always face another, sometimes known as synchronous rotation. 4. Obliquity: Tilt of a planet s axis relative to the plane of its orbit 40