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Galaxy Characteristics

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galaxy bulges, globular clusters. Non-relaxed systems found in other ... Mass way big Dark Matter! X-ray. Visible. Elliptical Characteristics. 5-100 ~10. 10-100 ... – PowerPoint PPT presentation

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Title: Galaxy Characteristics


1
Galaxy Characteristics
  • Surface Brightness
  • Alternative to Luminosity
  • I(R) Flux/area erg/s/cm2/arcsec2
  • I(0) center flux
  • I(R) at radius R
  • Define R where I25, R25
  • Often R25 defines edge
  • I depends on wavelength

2
Ellipticals
  • Widest range of characteristics
  • Size, Brightness
  • LEgt25 billion L? LEltfew billion L ?
  • Surface Brightness goes as
  • Re effective radius (1/2 of light)
  • For ngt1, b1.999n-0.327
  • n4, de Vaucouleurs Law, R1/4 law large E

3
  • Core brightness - radius/overall luminosity
  • Large Luminosity Ellipticals
  • faint core
  • large core radius
  • Shape
  • Large Ellipticals more spherical (E0)
  • Motion of stars very random
  • Virial Theorem relation of kinetic energy to
    potential (gravitational) energy of a system

4
Virial Theorem
Mass distribution related to density,
velocity Can also relate surface brightness,
gives a 1/R dependence (I 1/R) Systems that
follow this are relaxed Relaxed systems seen
in some spiral galaxy bulges, globular
clusters Non-relaxed systems found in other
spiral galaxy bulges, ellipticals
indicates they have yet to settle down
5
Faber-Jackson Relation
  • Velocity dispersion s (km/s)
  • Related to Elliptical galaxy luminosity
  • Lv 2 x 1010 L? (s/200 km/s)4
  • Why?
  • Useful for getting distances to Ellipticals

6
Other Characteristics
  • Stellar population
  • Cool star
  • Brightest KM Supergiants
  • Colors
  • Depends on luminosity/size/composition
  • Brighter/larger redder metal rich
  • Fainter/smaller bluer metal poor
  • Gas - X-ray
  • Mass way big Dark Matter!

7
X-ray
Visible
8
Elliptical Characteristics
9
Spirals
  • Observed features depend on wavelength
  • Bright stars, spiral arms visible, UV
  • Faint stars, dust IR
  • Gas IR, radio
  • Which wavelength makes the galaxy brighter?
  • How does the surface brightness vary?

10
  • Surface Brightness Relation
  • hR scale height (typically 1-10 kpc)
  • Also have variation of brightness with hz
  • typically hz 0.1 hR
  • Spirals with small I(R) have lots of H I why?

11
Gas in Spirals
  • H I dominant in disk
  • Motion of disk motion of H I
  • Spider Diagrams show velocity of disk motion
  • What should that look like?

12
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13
  • H I visible beyond optical edge
  • Molecular gas confined to inner galaxy
  • Sc, Sd, Sm galaxies lots of H I
  • S0
  • Little gas
  • Some exceptions ring-like structures
  • Motion of gas mass of galaxy
  • Tilt of galaxy
  • Velocity varies along disk

14
  • Goodie another formula!
  • Vsys velocity of galaxy through space
  • V(R) velocity at radius R (rotation curve)
  • i tilt from perpindicular (i0 face on)
  • f angle from motion towards/away
  • This can be solve for the
  • rotation curve

15
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16
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17
  • What can velocities tell us?
  • Amount of velocity doesnt correspond to what we
    see!
  • More mass is needed to produce velocities!
  • Dark Matter (in halo)!
  • Tully Fisher Relation
  • L ? vmax a
  • vmax maximum rotation velocity
  • a 4
  • a depends on wavelength

18
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19
Spiral Structure
  • Use spiral arm tracers to map, measure
  • CO, H II, blue stars
  • Why do spirals exist?
  • Density wave theory
  • Stochastic theory
  • ?

20
  • Bars
  • Move at own rate, solid body rotation
  • Inward/outward motion?
  • S0, Sa bars stars
  • Sb, Sc, Sm stars, gas, dust
  • Bulges
  • Elliptical (simple to triaxial)
  • Peanut shaped
  • Metallicity metal poor
  • I(R) like Elliptical galaxies
  • Black holes, Rings, other messes

21
Irregulars
  • No consistent characteristics
  • (what did you expect?)
  • Often lots of gas and dust
  • Inconsistent star formation histories
  • Like spirals in brightness (sort of), but fainter
  • Some with bars

22
Spiral Characteristics
23
Spiral/Irr Characteristics
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