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Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

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Page 1: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Watch This Space!

Monsters at WorkLiz PuchnarewiczMullard Space Science LaboratoryUniversity College London

Page 2: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Light comes in waves or packets

electromagnetic waves

photons

Page 3: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

It all goes at the same speed

Page 4: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

White light

No. of photons

energywavelength

spectrum

Page 5: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

‘Hot’ light

No. of photons

energywavelength

spectrum

Page 6: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Hot light from stars

No. of photons

energywavelength

spectrum

Page 7: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Thick heatdense gas

slab

blackbody radiation

thick gasNo. of

photons

energywavelength

Page 8: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Quasar soft X-ray spectra

blackbody radiation

thick gas

No. of photons

energy

wavelength

soft X-raysEUVUV

Page 9: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Spectral lines

No. of photons

energywavelength

spectrum

Page 10: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Atomic line transitions

ground

ionized

Ly Ly

Page 11: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Emission line spectra

ground

ionized

Ly Ly

No. of photons

energywavelength

Page 12: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Cosmological distancesNo. of

photons

energywavelength

quasar

No. of photons

energywavelength

laboratory

Page 13: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

X-ray spectra from space

The XMM-Newton observatory

Page 14: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Fluorescence

ground

ionized

Page 15: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Iron disks in X-rays

No. of photons

energywavelength

Page 16: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Quasar accretion disks

No. of photons

energywavelength

soft X-raysEUVUV

Page 17: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

The disk in MCG-6-30-15

Page 18: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

A very hot corona

No. of photons

energy

wavelength

soft X-rays

EUVUV hard X-rays

disk continuum

disk line

Page 19: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Electrons kick light into X-rays

Fast-moving electron

Inverse Compton scattering

Page 20: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

A quasar

Page 21: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Thin heatthin gas

slab

bremsstrahlung radiation

thin gasNo. of

photons

energywavelength

Page 22: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Gamma-ray bursts

Page 23: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Ultimate devastation

The SWIFT mission

Page 24: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Scary monsters at work

Page 25: Watch This Space! Monsters at Work Liz Puchnarewicz Mullard Space Science Laboratory University College London

Watch This Space!

Monsters at WorkLiz PuchnarewiczMullard Space Science LaboratoryUniversity College London