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finish up first stage basic notes
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@ -265,7 +265,65 @@ What the heck should be in there. Let's draft up an outline.
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- generally more particles in FS, affects isolation
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- generally more particles in FS, affects isolation
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** Presentation and Discussion of selected Histograms
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** Presentation and Discussion of selected Histograms
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*** pT of γγ system
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- Parton showers enhance at higher pT
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- intrinsic pT at lower pT (around 1GeV)
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- some isolation impact
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- but highest in phase space cuts
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- increase is almost one percent
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- pT recoils to the diphoton system usually substract pT from one
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photon -> harder to pass cuts -> amplified through big
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probability of low pT events!
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*** pT of leading and sub-leading photon
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- shape similar to LO
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- first photon slight pT boost
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- second almost untouched
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- cut bias to select events that have little effect on sub-lead
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photon
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*** Invariant Mass
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- events with lower m are allowed throgh cuts
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- events with very high recoil suppressed: colinear limit...
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*** Angular Observables
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- mostly untouched
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- biggest difference: total xs and details
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- but LO gives good qualitative picture
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- reasonable, because LO should be dominating
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*** Effects of Hadronization and MI
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- fiducial XS differs because of isolation and cuts in the phase
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space
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- we've seen: parton shower affect kinematics and thus the shape of
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observables and phase space cuts
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- isolation critera:
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- photon has to be isolated in detector
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- allow only certain amount of energy in cone around photon
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- force moinimum separation of photons to prevent cone overlap
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- Hadronization spreads out FS particles (decay kinematics) and
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produces particles like muons and neutrinos that aren't detectable
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or easily filtered out -> decrase in isolation toll
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- MI increases hadr activity in FS -> more events filtered out
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*** Summary
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- LO gives qualitative picture
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- NLO affect observables shape, create new interesting observables
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- some NLO effects affect mainly the isolation
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- caveat: non-exhaustive, no QED radiation enabled
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* Wrap-Up
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* Wrap-Up
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** Summary
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** Summary
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- calculated XS
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- studied and applied simple MC methods
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- built a basic working event generator
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- looked at what lies beyond that simple generator
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** Lessons Learned (if any)
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** Lessons Learned (if any)
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- calculations have to be done verbose and explicit
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- spending time on tooling is OK
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- have to put more time into detailed diagnosis
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- event generators are marvelously complex
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** Outlook
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** Outlook
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- more effects
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- multi channel mc
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- better validation of vegas
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