metallicity dependence of winds from red supergiants and asymptotic giant branch stars

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Metallicity Dependence of Winds from Red SuperGiants and Asymptotic Giant Branch Stars

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Metallicity Dependence of Winds from Red SuperGiants and Asymptotic Giant Branch Stars. Jacco van Loon Keele University. Jacco van Loon Keele University. Dust wind structure. Radiative equilibrium + continuity equation:. Spectral Energy Distribution. Spectral Energy Distribution. - PowerPoint PPT Presentation

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Page 1: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Metallicity Dependence of Winds from

Red SuperGiants and

Asymptotic Giant Branch Stars

Page 2: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Jacco van LoonKeele

University

Page 3: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Jacco van LoonKeele

University

Page 4: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 5: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 6: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 7: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 8: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 9: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 10: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 11: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 12: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Dust wind structure

Radiative equilibrium + continuity equation:

Page 13: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Spectral Energy Distribution

Page 14: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Spectral Energy Distribution

• Integral luminosity

Page 15: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Spectral Energy Distribution

• Integral luminosity• Shape optical depth

Page 16: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Spectral Energy Distribution

• Integral luminosity• Shape optical depth

… but measuring mass-loss rate requires:

• Dust-to-gas ratio

Page 17: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Spectral Energy Distribution

• Integral luminosity• Shape optical depth

… but measuring mass-loss rate requires:

• Dust-to-gas ratio• Wind speed

Page 18: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Dust wind structure

Momentum equation:

Gail & Sedlmayr (1986)

Page 19: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Dust wind structure

Page 20: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 21: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 22: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 23: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 24: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 25: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 26: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 27: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 28: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 29: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 30: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 31: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Large Magellanic Cloud

Page 32: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Parkes radio observatory

Page 33: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Wind speed from OH masers

Wood et al. (1992)

Page 34: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Marshall et al. (2004)

Page 35: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Wind speed

Page 36: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Wind speed

For oxygen-rich stars

Page 37: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

LMC versus the Milky Way

Van Loon (2000)

Page 38: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Mass-loss rate

Page 39: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Mass-loss rate

For oxygen-rich stars

Page 40: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

van Loon et al. (1999) + new MSX sample

Page 41: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Superwind mass-loss ratesConversion of radiative momentum:

Page 42: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Superwind mass-loss ratesConversion of radiative momentum:

Multiple scattering:

Gail & Sedlmayr (1986)

Page 43: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Superwind mass-loss rates

Multiple scattering limit predicts:

Page 44: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Superwind mass-loss rates

Multiple scattering limit predicts:

Page 45: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

LMC versus galactic bulge

Alard et al. (2001)

Page 46: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Temperature and evolution

Alard et al. (2001)

Galactic bulge observations:

Page 47: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Temperature and evolution

Alard et al. (2001)

Galactic bulge observations:

Hydrodynamic models (carbon stars):

Arndt, Fleischer & Sedlmayr (1997)

Wachter et al. (2002)

Page 48: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Superwind stars in the LMC

luminosity, metallicity (20-25% solar), mass

Cluster superwind carbon star LI-LMC 1813:

Van Loon et al. (2003)

Page 49: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Superwind stars in the LMC

luminosity, metallicity (20-25% solar), mass

Cluster superwind carbon star LI-LMC 1813:

Van Loon et al. (2003)

Wachter et al. (2002)

Compare with solar metallicity model:

Page 50: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Superwind stars in the LMC

Van Loon et al. (2005)

Page 51: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Superwind stars in the LMC

For oxygen-rich stars

Page 52: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

LMC prediction applied to Milky Way

Van Loon et al. (2005)

Page 53: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Small Magellanic Cloud

Page 54: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Small Magellanic Cloud

47 Tucanae

Page 55: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

SMC versus the LMC

Page 56: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Mass-loss rate

For oxygen-rich and carbon stars

Page 57: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

LMC + corrected SMC from Groenewegen et al. (2000)

Page 58: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Z-independent mass-loss rate?

Page 59: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Z-independent mass-loss rate?

(above ~0.1 solar metallicity)

Page 60: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Z-independent mass-loss rate?

(above ~0.1 solar metallicity)

WHY ?

Page 61: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Pulsation in LMC superwind stars

Whitelock et al. (2003)

Page 62: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Pulsational energy

Absolute maximum = 0.5

Page 63: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 64: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Pulsation during the superwind

Similar limit for Milky Way, LMC, SMC

Page 65: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Pulsation during the superwind

Similar limit for Milky Way, LMC, SMC

Page 66: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Pulsation during the superwind

Similar limit for Milky Way, LMC, SMC

Hence similar (maximum) mass-loss rates?

Page 67: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Molecule formation

Van Loon et al. (1998)

Page 68: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Molecule formation

• LMC: AGB up to M10; RSG up to M7

Page 69: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Molecule formation

• LMC: AGB up to M10; RSG up to M7

• SMC: AGB up to M8; RSG up to M5Groenewegen & Blommaert (1998)

Page 70: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

ESO-VLT

Page 71: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Magellanic carbon stars

Page 72: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Magellanic carbon stars

Van Loon, Zijlstra & Groenewegen (1999)Matsuura et al. (2002, 2005)

Page 73: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Magellanic carbon stars

Large(r?) molecular abundances at low Z

Page 74: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Magellanic carbon stars

Large(r?) molecular abundances at low Z

Especially C2 and C2H2 (not CN and HCN)

Page 75: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Magellanic carbon stars

Large(r?) molecular abundances at low Z

Especially C2 and C2H2 (not CN and HCN)

Due to lower O (and N) abundances

Page 76: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Metal-poor carbon star winds

What if in metal-poor carbon stars...

Page 77: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Metal-poor carbon star winds

What if in metal-poor carbon stars...

… the dust-to-gas ratio were higher...

Page 78: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Metal-poor carbon star winds

What if in metal-poor carbon stars...

… the dust-to-gas ratio were higher...

… their winds would be faster...

Page 79: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Metal-poor carbon star winds

What if in metal-poor carbon stars...

… the dust-to-gas ratio were higher...

… their winds would be faster...

… but their mass-loss rates the same (?)

Page 80: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Spitzer Space Telescope

Page 81: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Molecules in magellanic winds

Spitzer GO programme 3505 (Peter Wood)

Page 82: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars
Page 83: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

CO in magellanic winds

• measure dust-to-CO ratio

• measure carbon star wind speed

Page 84: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Conclusions (to be continued)

above ~0.1 solar metallicity:

Page 85: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Conclusions (to be continued)

• mass-loss rates independent of Z

above ~0.1 solar metallicity:

Page 86: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Conclusions (to be continued)

• mass-loss rates independent of Z• metal-poor O-rich stars are less dusty

above ~0.1 solar metallicity:

Page 87: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Conclusions (to be continued)

• mass-loss rates independent of Z• metal-poor O-rich stars are less dusty• slower winds of metal-poor O-rich

stars

above ~0.1 solar metallicity:

Page 88: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Conclusions (to be continued)

• mass-loss rates independent of Z• metal-poor O-rich stars are less dusty• slower winds of metal-poor O-rich

stars• … smaller momentum injection rate

above ~0.1 solar metallicity:

Page 89: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Conclusions (to be continued)

• mass-loss rates independent of Z• metal-poor O-rich stars are less dusty• slower winds of metal-poor O-rich stars• … smaller momentum injection rate• are metal-poor carbon stars less dusty?

above ~0.1 solar metallicity:

Page 90: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Conclusions (to be continued)

• mass-loss rates independent of Z• metal-poor O-rich stars are less dusty• slower winds of metal-poor O-rich stars• … smaller momentum injection rate• are metal-poor carbon stars less dusty?• wind speed of metal-poor carbon stars: ?

above ~0.1 solar metallicity:

Page 91: Metallicity Dependence  of Winds from  Red SuperGiants  and  Asymptotic Giant Branch Stars

Conclusions (to be continued)

• mass-loss rates independent of Z• metal-poor O-rich stars are less dusty• slower winds of metal-poor O-rich stars• … smaller momentum injection rate• are metal-poor carbon stars less dusty?• wind speed of metal-poor carbon stars: ?

above ~0.1 solar metallicity:

Below ~0.1 solar metallicity: ?