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Dileptons and Photons K. Dusling and I. Z. BNL 09
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Outline Motivation Rates Evolution Experiments
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NA45: 95
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NA60: 03
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Phenix: 07
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Rate: Formally
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Acceptance: NA60 vs PHENIX
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Hadronic Rates
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Dilepton Production l+ l- l+ l-
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Expand in Stable Hadrons +2+3, …-Pi, +2+3, …-K Resonance Gas: J=ρ+ρ’+.. +2+3, …-N
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Many Feyman Graphs: + + …
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How to reduce
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Asymptotics: Broken CS
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In Practice: NF=2 Chiral Limit and zero-mtm pion:
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VA Mixing=LxR Restoration? Dey, Eletsky, Ioffe 96
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Expansion Parameter: = 0 Dilute!
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2-pion Final state:
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ΠV and ΠA
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Data : e+e- Decay.
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1 Nucleon Final State = 1 Loop ChPT N- Transition +
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Input at the Photon Point N background
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VA Mixing in T=180 MeV
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VA Mixing in a 1 a 1 T=150 MeV μb=225 MeV
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QGP Rates
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wQGP: l+ l-l- l-
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wQGP: LPM Effect: Aurenche et al 02
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wQGP: γ Collinear Enhancement+ LPM Effect : Arnold, Moore, Yaffe 01
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sQGP: OPE Hansson and Zahed 91
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Hydro Evolution
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Hydro Parameters SPS, RHIC and LHC
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Fireball: NA60
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Thermal Freeze-out Cooper-Frye
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Chemical Freezeout: Fireball cools faster x Rates higher = w/μπ !
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NA60
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NA60 : dN/dη=140
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Pt Spectra: Intermediate
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NA60 dimuons : Upshots 1.Hadronic emission dominant: VA mixing 2.Partonic emission small: tiny QGP 3.Blue shifted spectra (M=rho): small Lh? 1.Hadronic emission dominant: VA mixing 2.Partonic emission small: tiny QGP 3.Blue shifted spectra (M=rho): small Lh?
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Phenix: Dileptons
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pT spectra: Wπ+Wππ
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MIGHTY FILTER!
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PHENIX Dusling+Z 07 Dusling+Z 09
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PHENIX DI-electrons : Upshots 1.Hadronic large but Filtered: M<500 MeV 2.Partonic large and dominant: 100<M<250 !! 3.Hadronic large and dominant: M=ρ-ω-φ 4.Non-thermal emission: 300<M<500 MeV. Another DLS-like puzzle? 1.Hadronic large but Filtered: M<500 MeV 2.Partonic large and dominant: 100<M<250 !! 3.Hadronic large and dominant: M=ρ-ω-φ 4.Non-thermal emission: 300<M<500 MeV. Another DLS-like puzzle?
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Phenix: Photons
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Versus Kinetic Turbide, Rapp, Gale 04; Liu, Rapp 07
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WA98 0<qT (GeV) <4 0<qT (GeV)<0.8 N:x2
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Rates at RHIC RHIC1 RHIC2
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PHENIX RHIC1 RHIC2
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PHENIX extrapolation
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Systematics of the Extrapolation 15% Systematics!
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LHC: √s=5.5 TeV 0<qT(GeV)<2 1<qT (GeV)<5
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WA98 and PHENIX Photons : Upshots 1.WA98: Hadronic emission of photons dominated by hadrons: M<2 GeV 2.PHENIX, LHC: Hadrons dominant for M<1GeV. QGP ‘visible’ around 1.5GeV. 1.WA98: Hadronic emission of photons dominated by hadrons: M<2 GeV 2.PHENIX, LHC: Hadrons dominant for M<1GeV. QGP ‘visible’ around 1.5GeV.
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