stellar evolution – the life and death of a star… here’s the story we’ll tell… lowest mass...

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Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… • Lowest mass stars and their evolution • Low mass star evolution • High mass star evolution • Stellar death, and stellar corpses • Origin of the chemical elements – stars do it!

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Page 1: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Stellar Evolution – the Life and Death of a

Star…Here’s the story we’ll tell…• Lowest mass stars and their evolution• Low mass star evolution• High mass star evolution• Stellar death, and stellar corpses• Origin of the chemical elements – stars do

it!

Page 2: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Stars: always born in star clusters!

• Low temperature requires shielding from the radiation of other stars; requires dust which requires a lot of mass, since dust is a relatively rare component of interstellar clouds

• Star clusters forming in today’s environment are called “open star clusters”, dozens to hundreds of stars

Page 3: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

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Page 4: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

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Page 5: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

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Page 6: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Size vs mass for planets, bd’s,stars

Page 7: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Stellar Evolution: How stars live and die

• Visualize stellar evolution as a path on the H-R Diagram

• Remember, it’s a plot of Surface Temperature vs. Luminosity

• Where do you suppose stars first appear on the diagram? Ponder……

Page 8: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

HR pre main sequence sun

Page 9: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Another Quick Overview First…

• Stars burn through their hydrogen, evolve off Main Sequence to become Red Giants, then die in various ways

• High mass stars evolve fast,… • Low mass stars evolve slowly

Page 10: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

HR main sequence turnoff

Page 11: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

The H-R Diagram of a Star Cluster

•All Stars born at the same time, only differ in their mass•Stars age at different rates, depending on their mass. More mass = faster evolution•Stellar Evolution web simulator

Page 12: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

HR of star clusters vs age

Page 13: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

M55 HR diagram

Page 14: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Evolution of Low Mass Stars• Note! I distinguish between low and medium

mass stars – the book calls all of them “low mass”.

• Begin with H burning in core• When H runs out, core collapses under

gravity, releasing grav potential energy, raising star’s luminosity

• Core collapse stops when “electron degeneracy” sets in. Electrons are “elbow to elbow” (in a quantum mechanical sense)

Page 15: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Layers; main seq vs. giant

Page 16: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Medium Mass Star Evolution

• H burning until all H is He, then core collapse, releasing gravitational potential energy, raising luminosity and expanding the star ~ x100 times

• Core density and temperature rises until 100 million K. Then…..

• Well, you tell me – what are the options for further fusion? We have H and He floating around in the core…

Page 17: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Be per nucleon

Page 18: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Helium burning layer

Page 19: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Sun to red giant cartoon

Page 20: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

HR tracks to red giant

Page 21: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Sun and red giant side by side

Page 22: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Sun’s L vs time

Page 23: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

We’re all doomed

Page 24: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

HR with instability and variables

Page 25: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

The End of the Line for Medium Mass Stars like the Sun…

• Added luminosity is so strong, it lifts the red giant’s low density outer envelope completely off the star.

• As it expands, its opacity drops and we see to a deeper and deeper and hotter and hotter depth, so the star moves left on the HR diagram

• Until… we see the electron degenerate core; the new white dwarf created at the center

• This core can now cool, as it can’t collapse further and it is exposed to the cold of outer space.

• Thus, it follows the cooling curve of a white dwarf; down and to the right on the HR diagram

• So, what we see is a hot stellar corpse surrounded by an expanding and thinning cloud of flourescent gas = a Planetary Nebula

Page 26: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

HR track to PN stage

Page 27: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

White dwarf->pN shell w velocity

Page 28: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Green fuzzball

Page 29: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

PN misc young

Page 30: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Cateye nebula

Page 31: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Dumbell

Page 32: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Dumbell hst upclose details

Page 33: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Egg burst nebula

Page 34: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Helix Nebula

Page 35: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Ic 4406 P

Page 36: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Little Ghost PN

Page 37: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

NGC 2346 pn

Page 38: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Pn abell 39

Page 39: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

NGC 2440 pn

Page 40: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

NGC 6751 PN (blue eye)

Page 41: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Ring Nebula

Page 42: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

PN flying badminton

Page 43: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

PN misc

Page 44: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Spirograph PN

Page 45: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Eskimo lowres

Page 46: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Eskimo hi res

Page 47: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Evolution of High Mass Stars – Short and Violent

Lives• Have enough mass to heat & compress core

to fuse all the way up to iron• Iron – the most stable, most tightly bound of

all nuclei• All fusion or fission involving iron will subtract

heat from the star’s core, not add to it. “Danger! Danger Will Robinson!”

Page 48: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Layers of a pre SN II

Page 49: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Eta Carinae

Page 50: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Ant nebula

Page 51: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Wolf-rayet star

Page 52: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

The Death of High Mass Stars…

• When iron core exceeds about 1.4 solar masses, the temperature becomes high enough to cause nuclear reactions for iron

• Nuclear burning causes further core collapse, which raises the density and accelerates the nuclear reactions.

• In 0.2 seconds (!) the core collapses, fusing iron into lighter and also heavier elements

• This is the ONLY place in the universe that elements heavier than iron are made!

• Neutrinos produced, so vast in number that they blow apart the star…

Page 53: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Be per nucleon

• Be per nucleon

Page 54: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Supernova! (SN II)• 99% of energy release, the gravitational

potential of the star, goes into neutrinos• 1% goes into the explosion• 0.01% goes into visible light. Still, the light

is bright enough to equal the entire galaxy of 100 thousand million stars (Gah!)

• SN II are the only place in nature where the elements heavier than iron are produced

Page 55: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Let’s look at some ancient supernova remnants…

Page 56: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Cass A

Page 57: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Cass A colored

Page 58: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Cass A upclose

Page 59: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Kepler’s snr

Page 60: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

LMC SNR

Page 61: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Another LMC SNR

Page 62: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

SNR H-alpha

Page 63: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Pencil nebula snr

Page 64: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Veil Nebula (entire)

Page 65: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Cygnus loop SNR

Page 66: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Veil closeup1

Page 67: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Crab HST

Page 68: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Grav redshift

Page 69: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Neutron star layers

Page 70: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Egg nebula pulsar

Page 71: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Crab center w jet

Page 72: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Cerenkov radiation diagram

Page 73: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Crab center w jet sequence

Page 74: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Crab HST center upclos

Page 75: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Let’s look at another Pulsar. This one is in the globular star

cluster 47 Tucanae…

Page 76: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

47 Tuc – ground based

Page 77: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

47 Tuc HST

Page 78: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Millisecond pulsar

Page 79: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

How to Detect Neutrinos?

• Like, neutrinos from supernova explosions• …or neutrinos from the sun (the strongest source

because it’s so close)• - once in a great while a neutrino will hit an

electron and deposit its energy, accelerating the electron to almost the speed of light. This rapid acceleration causes the electron to give of photons of light = synchrotron radiation

Page 80: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Sudbury neutrino detector

Page 81: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

The Cosmic Abundances of the Chemical Elements

• Due to the nuclear fusion in the cores of stars• And… to supernova explosions• Remember – Supernova explosions are the ONLY

place in the universe where heavy elements are created!

• All the elements beyond Iron in the periodic table (gold, silver, uranium, copper…) are created ONLY in the core collapse of a supernova explosion.

Page 82: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Abundances of all elements

Page 83: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Abundances of all elements graph

Page 84: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Cosmic Rays…• The blast of a supernova explosion sends out

elementary particles at near the speed of light. These get further accelerated by magnetic fields in the galaxy.

• When they impact earth, they smash into our atmosphere and create cosmic ray air showers…

• Cosmic rays are a significant source of genetic mutations. Cancer odds are higher the higher the elevation you live, in part because of more cosmic ray exposure!

Page 85: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Cosmic ray airshower

Page 86: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

What happens if the stars are in a close binary

system?

• This happens a lot! Nearly half the stars in our Galaxy are members of binary star systems

• Roche lobe defines gravitational “backyard” for each star

Page 87: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Mass transfer binary (art)

Page 88: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Mass transfer accretion disk

Page 89: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

X-ray binary art

Page 90: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Nova sequence

Page 91: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

But with all this mass falling onto the white dwarf, there’s

another possibility…

• … something more ominous… more terrifying… more…. Scary!

• What could that BE?!

Page 92: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Carbon Bomb Supernova (SN type I)

• If the white dwarf is close to the 1.4 solar mass upper limit that electron degeneracy can support…

• The added mass could push it past the limit before it gets hot enough to flash off

• Then, star collapses under the weight and because it is electron degenerate, energy created will not expand the star and shut off the fusion.

• So, entire star (carbon, mostly) undergoes fusion at once. What a star normally takes billions of years to burn, this star burns all at once. BIG explosion!

Page 93: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

SN Ia sequence

Page 94: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Supernova! (SN I)• These are even brighter than SN II’s from

massive stars.• Very useful – they’re all the ~same – 1.4 solar

mass white dwarfs undergoing nuclear fusion. This turns out to mean they are…

• GREAT “standard candles” – objects of known luminosity, on which we can then use simple math to determine their distance.

• So, any SN I and its host galaxy, we can find it’s distance, even out to the edge of the observable universe, since they are so bright.

• Huge amount of observational effort today is going into discovering and charting the light curve of SN I’s throughout the universe!

Page 95: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

SN Ia light curves

Page 96: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

3 Possible Ends of a Stellar Corpse!

• If mass < 1.4 Msun = White Dwarf

• If 1.4Msun < M < 3 Msun = Neutron star

• If M > 3 Msun = Black Hole!

Page 97: Stellar Evolution – the Life and Death of a Star… Here’s the story we’ll tell… Lowest mass stars and their evolution Low mass star evolution High mass

Tole cartoon