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Unifying afterglow diversity Gabriele Ghisellini INAF-Osservatorio Astronomico di Brera - Italy with the help of G.Ghirlanda and M. Nardini
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X-ray and optical often behave differently ~same spectrum TATATATA Is this “real” afterglow? i.e. external shock? X-ray What is T A ? optical
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2 Component model Component 1: Standard afterglow.Component 1: Standard afterglow. Standard=forward shocks in the ISM (e.g. Panaitescu & Kumar 2000) Component 2:Component 2: Completely phenomenological. Used for the “flat-steep” part of the light curve. Constant SED (minimum # of parameters). Both componentsBoth components emit optical and X-rays
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X-ray optical
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X-ray Afterglow Optical Afterglow Standard afterglow theory (Panaitescu & Kumar 2000)
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Component 2 Component 2: completely phenomenological at this stage
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flat steep
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Sum Sum
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X-ray optical
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Optical Afterglow X-ray Afterglow
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Component 2
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flat steep
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Sum Sum
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Good fits for all 33 GRBs in the sampleGood fits for all 33 GRBs in the sample What is “component 2”?What is “component 2”?
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~5/3 Decay index of steep part of comp 2 steep
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~70 Swift GRBs with z X-rays
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t -5/3
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t -5/4
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Ghisellini+ 2009 Comp 2
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Lazzati+ 2008 t -5/3 From averaging the luminosity of flares in different GRBs
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MacFadyen+ 2001 t -5/3 M from fallback
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Zhang Woosley Heger 2008 10 6 10 5 10 4 10 3 Time [s] Fallback lasts for quite a long time M from fallback
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Fallback Prolonged activity of the central engineFallback Prolonged activity of the central engine Can we explain T A ?Can we explain T A ?
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Early (normal) prompt: Early (normal) prompt: >>1 / j Late prompt: Late prompt: >1 / j Late prompt: Late prompt: =1 / j Late prompt: Late prompt: <1 / j ”real” after- glow Ghisellini et al. 2007 Strong, erratic Smooth After the early prompt, the central engine decreases energy and decreases monotonically R~10 13 cm
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Early (normal) prompt: Early (normal) prompt: >>1 / j Late prompt: Late prompt: >1 / j Late prompt: Late prompt: =1 / j Late prompt: Late prompt: <1 / j ”real” after- glow Ghisellini et al. 2007 R~10 13 cm TATATATA T jet
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Conclusions 2 components can explain the diversity2 components can explain the diversity Component 2 can be associated with the prolonged activity of the entral engineComponent 2 can be associated with the prolonged activity of the entral engine Fallback is long late prompt “forever”Fallback is long late prompt “forever” Flares as accretion of denser chunks of fallback materialFlares as accretion of denser chunks of fallback material T A can be explainedT A can be explained Next…Next…
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NEXT (Marco Nardini): Can we also explain the presence/absence of jet breaks?Can we also explain the presence/absence of jet breaks?
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~ t - /2 t-2t-2t-2t-2 t-3t-3t-3t-3 Time Flux M out ~ t -( ) /2 TATATATA L M out ~ t -
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~ t - /2 t-2t-2t-2t-2 t-3t-3t-3t-3 Time Flux M out ~ t -( ) /2 Long lasting engine with two-phase accretion? 1: Very dense torus, large B-field, erratic. 2: Less dense material, smaller B-field, smoother accretion – Fallback? TATATATA L M out ~ t - L~ M accr ? Very cheap
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SEDs vs light curvesSEDs vs light curves Tests Log F Log F Log Log optical X-rays
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SEDs vs light curvesSEDs vs light curves Some GRBs with no plateau: achromatic breaks?Some GRBs with no plateau: achromatic breaks? Tests
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SEDs vs light curvesSEDs vs light curves Some GRBs with no plateau: achromatic breaks?Some GRBs with no plateau: achromatic breaks? Late ‘jump’ in X-ray light-curves revealing real X-ray afterglowLate ‘jump’ in X-ray light-curves revealing real X-ray afterglow Tests TATATATA Jump=end of late prompt Time X-ray Flux
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