Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field...

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Transcript of Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field...

Page 1: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 2: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 3: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 4: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 5: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 6: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 7: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs

Dr(M,q;m

B,T)=

1

M 2 - mr

2 - Srππ- S

rB- S

rMéë

ùû

Page 8: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 9: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 10: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 11: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 12: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 13: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 14: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 15: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 16: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 17: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 18: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 19: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 20: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 21: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 22: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 23: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 24: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 25: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs

[GeV]NN

s1 10 210

0.5

≤Y

ield

in |y|

0

5

10

15

20

25

610×±πN

-e+eN

1.45×fbτ

610×chN

-e+eN

Au+ Au

1.23 AGeV

Ar+ KCl

1.76 AGeV

Au+ Au

1.23 AGeV

Page 26: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs

Critical point? (Lattice QCD) Cross over

Ea

rly

Un

ivers

e

Neutron Stars Nuclei

Quark-Gluon Plasma

Hadron gas

 

< qq >T ,mB

< qq >T =0,mB =0

Chiral?

Quarkyonic?

1st order phase boundary?

Page 27: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 28: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 29: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 30: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 31: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 32: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 33: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 34: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 35: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 36: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 37: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 38: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 39: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 40: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 41: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 42: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 43: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 44: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 45: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 46: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs
Page 47: Folie 1 - Institute for Nuclear Theory · M is the only Lorenz-invariant thermometer of the field Electromagnetic radiation (photons and lepton pairs) probes the interior of fireballs