Top Banner
1 21 vii 2009 LTD-13 The Low Temperature Universe Roger Blandford Stanford SLAC KIPAC
33

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

Jan 18, 2016

Download

Documents

Nickolas Grant
Welcome message from author
This document is posted to help you gain knowledge. Please leave a comment to let me know what you think about it! Share it to your friends and learn new things together.
Transcript
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!