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1 21 vii 2009 LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

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Page 1: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

121 vii 2009 LTD-13

The Low Temperature Universe

Roger BlandfordStanford

SLACKIPAC

Page 2: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

Hot Young Stars

221 vii 2009 LTD-13

Sun 6000o Rigel 11000o

Carinae20-30,000o

Orion Nebula

AB7 120,000o

Page 3: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

321 vii 2009 LTD-13

100o Steam 373o

0o Ice 273o

-269o Liquid Helium 4o

-273o Coldest 0o

Kelvin

Page 4: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

Thermodynamics- It’s the law

I Energy conservedII Disorder increasesIII Unattainable, zero temperature

421 vii 2009 LTD-13

Page 5: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

Electromagnetic Waves

521 vii 2009 LTD-13

300,000 km per second!

Light, infrared radiation, radio waves, X-rays…. are all electromagneticElectromagnetic waves comes in particles called photons

Wavelength

Energy ~ Frequency

Page 6: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

21 vii 2009LTD-13 6

The Electromagnetic Spectrum

Radio (s)mm IR O UV X-ray ray

High frequencyShort wavelength

Low frequencyLong wavelength

Colder Cold Warm Hot Hotter

Page 7: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

Gas Temperature

721 vii 2009 LTD-13

ColdSlow molecules

HotSlow molecules

Page 8: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

Hot Young Stars

821 vii 2009 LTD-13

Sun 6000o Rigel 11000o

Carinae20-30,000o

Orion Nebula

AB7 120,000o

Page 9: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

Brown dwarfs, planets and …

921 vii 2009 LTD-13Pluto 40K

Uranus 50K

Gliese 229B1800K

Page 10: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

1021 vii 2009 LTD-13

Page 11: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

1121 vii 2009 LTD-13

Page 12: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

1221 vii 2009 LTD-13

Page 13: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

21 vii 2009LTD-13 13

The Electromagnetic Spectrum

Radio (s)mm IR O UV X-ray ray

High frequencyShort wavelength

Low frequencyLong wavelength

Colder Cold Warm Hot Hotter

Page 14: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

1421 vii 2009 LTD-13

Page 15: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

1521 vii 2009 LTD-13

Page 16: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

1621 vii 2009 LTD-13

Page 17: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

21 vii 2009LTD-13 17

The Electromagnetic Spectrum

Radio (s)mm IR O UV X-ray ray

High frequencyShort wavelength

Low frequencyLong wavelength

Colder Cold Warm Hot Hotter

Page 18: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

M51 “Whirlpool Nebula”

1821 vii 2009 LTD-13

Hubble

Herschel

Page 19: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

1921 vii 2009 LTD-13

Page 20: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

21 vii 2009LTD-13 20

The Electromagnetic Spectrum

Radio (s)mm IR O UV X-ray ray

High frequencyShort wavelength

Low frequencyLong wavelength

Colder Cold Warm Hot Hotter

Page 21: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

2121 vii 2009 LTD-13

ALMA

Page 22: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

Barnard 68

2221 vii 2009 LTD-13

16 K

Page 23: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

2321 vii 2009 LTD-13

HELP!I’VE BEEN ABDUCTED

BY ALIENS

293K

Page 24: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

2421 vii 2009 LTD-13

HELP!I’VE BEEN ABDUCTED

BY ALIENS

80K

Page 25: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

2521 vii 2009 LTD-13

HELP!I’VE BEEN ABDUCTED

BY ALIENS

4K

Page 26: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

Cryogenic Dark Matter Search

2621 vii 2009 LTD-13

50 mK

Page 27: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

21 vii 2009LTD-13 27

The Electromagnetic Spectrum

Radio (s)mm IR O UV X-ray ray

High frequencyShort wavelength

Low frequencyLong wavelength

Colder Cold Warm Hot Hotter

Page 28: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

Microwave Background

2821 vii 2009 LTD-13

240K

310K

2.7K

Planck

QUaDWMAP

Page 29: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

2921 vii 2009 LTD-13

Neutron Stars

1 solar mass10 kmSuperconductivitySuperfluidity!

…are very cold!

Page 30: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

M87 – Virgo Cluster

3021 vii 2009 LTD-13

Six billion solar massesTen billion km

Page 31: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

Hawking Radiation

3121 vii 2009 LTD-13

Tiny Black Holes are Hot

Big Black Holes are Cold

Page 32: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

M87 – Virgo Cluster

3221 vii 2009 LTD-13

Six billion solar massesTen billion kmOne billion, billionth KOne photon per year!

Page 33: 121 vii 2009LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC

3321 vii 2009 LTD-13

The Universe is a Cool Place!