Minimum bias and the underlying event: towards the LHC I.Dawson, C.Buttar and A.Moraes University of Sheffield Physics at LHC - Prague July 6 - 12, 2003.

Slides:



Advertisements
Similar presentations
Niccolo’ Moggi XII DIS April The “Underlying Event” at CDF Niccolo’ Moggi Universita’ and I.N.F.N, Bologna for the CDF Collaboration April 15,
Advertisements

IMFP Day 4 April 6, 2006 Rick Field – Florida/CDF/CMSPage 1 XXXIV International Meeting on Fundamental Physics Rick Field University of Florida (for.
Event Generation with HERWIG Nick Brook University of Bristol Introduction Multiple Interactions in HERWIG Parameter Tuning B-production.
November 1999Rick Field - Run 2 Workshop1 We are working on this! “Min-Bias” Physics: Jet Evolution & Event Shapes  Study the CDF “min-bias” data with.
Event Simulation Tools in ALICE Andreas Morsch Generator Mini-Workshop CERN, Geneva June 20, 2003.
HEP Seminar - Baylor Waco, January 21, 2014 Rick Field – Florida/CDF/CMSPage 1 Outline of Talk CMS at the LHC CDF Run GeV, 900 GeV, 1.96 TeV 900.
CDF Joint Physics Group June 27, 2003 Rick FieldPage 1 PYTHIA Tune A versus Run 2 Data  Compare PYTHIA Tune A with Run 2 data on the “underlying event”.
2012 Tel Aviv, October 15, 2012 Rick Field – Florida/CDF/CMSPage 1 Rick Field University of Florida Outline of Talk CMS at the LHC CDF Run 2 
Cambridge 19 th April1 Comparisons between Event Generators and Data Peter Richardson IPPP, Durham University.
IPPP Seminar Durham, September 8, 2015 Rick Field – Florida/CDF/CMSPage 1 Outline of Talk CMS at the LHC CDF “Tevatron Energy Scan” 300 GeV, 900 GeV, 1.96.
Marina Cobal Università di Udine 1 Physics at Hadron Colliders Part II.
Run 2 Monte-Carlo Workshop April 20, 2001 Rick Field - Florida/CDFPage 1 The Underlying Event in Hard Scattering Processes  The underlying event in a.
Fermilab MC Workshop April 30, 2003 Rick Field - Florida/CDFPage 1 The “Underlying Event” in Run 2 at CDF  Study the “underlying event” as defined by.
AFP Introduction September 10th 2014 M. Bruschi, INFN Bologna (Italy) 1.
Fermilab Energy Scaling Workshop April 29, 2009 Rick Field – Florida/CDF/CMSPage 1 1 st Workshop on Energy Scaling in Hadron-Hadron Collisions Rick Field.
Minimum Bias and Underlying event studies at CMS Nick van Remortel Universiteit Antwerpen, Belgium on behalf of the CMS QCD group DIS09: XVII International.
2015 London, September 1, 2015 Rick Field – Florida/CDF/CMSPage 1 Outline of Talk CMS at the LHC CDF “Tevatron Energy Scan” 300 GeV, 900 GeV, 1.96.
D0 Meeting September 6, 2002 Rick Field - Florida/CDFPage 1 The “Underlying Event” in Hard Scattering Processes  What happens when a proton and an antiproton.
C2CR07-Lake Tahoe February 28, 2007 Rick Field – Florida/CDFPage 1 C2CR07 Rick Field University of Florida (for the CDF Collaboration) CDF Run 2 Min-Bias.
Workshop on Early LHC Physics May 6, 2009 Rick Field – Florida/CDF/CMSPage 1 Workshop on Early Physics Opportunities at the LHC Rick Field University of.
Moriond, March 2011 Soft QCD Results from ATLAS and CMS Claudia-Elisabeth Wulz Institute of High Energy Physics, Vienna, Austria On behalf of the ATLAS.
QCD Physics with ATLAS Mike Seymour University of Manchester/CERN PH-TH ATLAS seminar January 25 th / February 22 nd 2005.
Hardeep Bansil (University of Birmingham) 2013, Antwerp 2-6 December 2013  Total Inelastic Cross Section [Nat. Commun. 2 (2011) 463, arXiv: ]Nat.
LHCP 2014 New York, June 5, 2014 Rick Field – Florida/CDF/CMSPage 1 Outline of Talk CDF Run GeV, 900 GeV, 1.96 TeV LHCP 2014  D0 Photon + Jet Measurements.
LHC2010 Conference at Michigan Ann Arbor MI, December 12, 2010 Rick Field – Florida/CDF/CMSPage 1 LHC First Data Rick Field University of Florida Outline.
St. Andrews, Scotland August 22, 2011 Rick Field – Florida/CDF/CMSPage Rick Field University of Florida Outline  Do we need a.
The Underlying Event in Jet Physics at TeV Colliders Arthur M. Moraes University of Glasgow PPE – ATLAS IOP HEPP Conference - Dublin, 21 st – 23 rd March.
Andrey Korytov, University of Florida ISMD 2003 September 5-11, 2003, Kraków Soft QCD Phenomena in High-E T Jet Events at Tevatron Andrey Korytov for CDF.
PIC 2011, Vancouver August 29, 2011 Rick Field – Florida/CDF/CMSPage 1 Physics in Collision Rick Field University of Florida Outline  Examine.
Fermilab Energy Scaling Workshop April 28, 2009 Rick Field – Florida/CDF/CMSPage 1 1 st Workshop on Energy Scaling in Hadron-Hadron Collisions Rick Field.
CDF Paper Seminar Fermilab - March 11, 2010 Rick Field – Florida/CDF/CMSPage 1 Sorry to be so slow!! Studying the “Underlying Event” at CDF CDF Run 2 “Leading.
Photon and Jet Physics at CDF Jay R. Dittmann Fermi National Accelerator Laboratory (For the CDF Collaboration) 31 st International Conference on High.
Search for a Standard Model Higgs Boson in the Diphoton Final State at the CDF Detector Karen Bland [ ] Department of Physics,
2010 Glasgow, November 30, 2010 Rick Field – Florida/CDF/CMSPage Rick Field University of Florida Outline of Talk  Discuss the.
ICHEP 2012 Melbourne, July 5, 2012 Rick Field – Florida/CDF/CMSPage 1 ICHEP 2012 Rick Field University of Florida Outline of Talk CMS at the LHC CDF Run.
Underlying event at the LHC Multi-parton scattering Tuning of PYTHIA LHC predictions comparison with PHOJET and JIMMY UE in physics analyses Summary Craig.
ISMD2004 July 27, 2004 Rick Field - Florida/CDFPage 1 International Symposium on Multiparticle Dynamics Rick Field (theorist?) “Jet Formation in QCD”
Cambridge Workshop July 20, 2002 Rick Field - Florida/CDFPage 1 The “Underlying Event” in Hard Scattering Processes  What happens when a proton and an.
Experimental Aspects of soft QCD N. van Remortel Universiteit Antwerpen, Belgium Jet workshop Boston, Jan
on behalf of the CDF and DØ collaborations
Energy Dependence of the UE
Decomposing p+p Events at √s = 200 GeV with STAR
“softQCD” and Correlations Rick Field & Nick Van Remortel
Rick Field – Florida/CDF/CMS
Edgar Dominguez Rosas Instituto de Ciencias Nucleares
Lake Louise Winter Institute
A Closer Look at the Underlying Event in Run 2 at CDF
The “Underlying Event” in Run 2 (CDF)
Predicting MB & UE at the LHC
Event Shape Analysis in minimum bias pp collisions in ALICE.
Hard Core Protons soft-physics at hadron colliders
Modeling Min-Bias and Pile-Up University of Oregon February 24, 2009
Predicting “Min-Bias” and the “Underlying Event” at the LHC
“Min-Bias” and the “Underlying Event” at CDF
Monte-Carlo Generators for CMS
Min-Bias and the Underlying Event in Run 2
Rick Field – Florida/CDF/CMS
The Tevatron Connection
“Min-Bias” and the “Underlying Event” in Run 2 at CDF and the LHC
XXXIV International Meeting on Fundamental Physics
The Next Stretch of the Higgs Magnificent Mile
The “Underlying Event” in Run 2 at CDF
International Symposium on Multiparticle Dynamics
“Min-Bias” & “Underlying Event” at the Tevatron and the LHC
Rick Field – Florida/CDF/CMS
The Underlying Event in Hard Scattering Processes
Perspectives on Physics and on CMS at Very High Luminosity
PYTHIA 6.2 “Tunes” for Run II
Rick Field - Florida/CDF
Rick Field – Florida/CDF/CMS
Presentation transcript:

Minimum bias and the underlying event: towards the LHC I.Dawson, C.Buttar and A.Moraes University of Sheffield Physics at LHC - Prague July , 2003

Outline 1) Introduction 2) Definition: MB and the UE 3) Models: PYTHIA and PHOJET 4) Multiple interactions 5) Some general characteristics of MB data 6) Underlying event in charged jet evolution 7) Summary Physics at LHC - Prague

Introduction Physics at LHC - Prague p p ?  Inelastic hadron-hadron collisions are dominated by soft (low-p T ) interactions. Occasionally we get a hard scatter.  Perturbative QCD is very successful when applied to hard processes, but cannot be applied to the soft interactions. Alternative approaches are therefore required.  We also expect the effects of multiple-parton interactions to become significant at the LHC.  New measurements  Impact on physics backgrounds?  Important to model both the soft and hard components in MCs so that:  the impact on physics backgrounds can be assessed  the impact on detector performance can be evaluated Running of  S

 Inelastic hadron-hadron events selected with an experiment’s “minimum bias trigger”.  Usually associated with inelastic non-single-diffractive events (e.g. UA5, E735, CDF … ATLAS ?) Minimum bias events  Need minimum bias data if want to: 1) Study general characteristics of proton-proton interactions 2) Investigate multi-parton interactions and the structure of the proton etc. 3) Understand the underlying event: impact on physics analyses? Physics at LHC - Prague  In parton-parton scattering, the UE is usually defined to be everything except the two outgoing hard scattered jets: 1) Beam-beam remnants. 2) Additional parton-parton interactions. 3) ISR + FSR  Can we use “minimum bias” data to model the “underlying event”?  At least for the beam-beam remnant and multiple interactions? Definitions The underlying event  The “soft part” associated with hard scatters

Models for hadron-hadron collisions d  Decreasing p Tmin increases number of parton-parton interactions, and vice-versa. PYTHIA  Multiple interaction model needed to describe data.  Correlations introduced via a varying impact parameter. PHOJET  Need to connect hard scattering processes (perturbative QCD) to the soft processes (non-perturbative models).  Attempts to extend perturbative high-pt picture down to the low-p T region.  Parton-parton cross section become larger than proton-proton - interpreted as multiple parton interactions Physics at LHC - Prague  Developed mainly for soft and semi-hard particle production.  Implements ideas of Dual Parton Model for low-p T processes.  Multiple Pomeron exchanges give rise to sea-quark multi-chains  Unlike PYTHIA, HERWIG etc., PHOJET not developed for Standard Model (and beyond) physics analyses.  Limited to production mechanisms of strong interactions.  However, useful tool for MB and UE studies where jets are involved.

2) Double parton scattering measurement (CDF) Phys. Rev. D 56 (7) 3811 (1997). Multiple interaction measurements 1) Violation of KNO scaling  Multiplicity distributions expected to “scale” for single parton-parton interactions. Deviations attributed to multiparton interactions Physics at LHC - Prague Phys. Lett. B 435 (1998) 453 E735 data What about the LHC? E.g.  Similar measurements to CDF/E735  But watch out for backgrounds! Nuc. Phys. B 92 (2001) 130  Central jet veto in Higgs VBF channel?

Some general characteristics of minimum bias data Physics at LHC - Prague Violation of KNO scaling?  How does average charged particle multiplicity increase with energy?  A log 2 (s) term indicates extra parton interactions?  How does particle multiplicity fluctuate on an event by event basis?  The dispersion gives information on multiple interactions N ch = a + b.log(s)+c.log 2 (s) Differences in model predictions! PYTHIA “likes” UA5 PHOJET “likes” E735!

Some general characteristics of minimum bias data Physics at LHC - Prague Multiplicity correlations  Correlations attributed to “extra” partons or chains being produced in the central rapidity region.  Gives information about type of “cluster” decay  Correlation achieved in default PYTHIA using multiple interaction scenario  Switching on “varying impact parameter” model in PYTHIA gives results similar to PHOJET.  Forward-backward correlations defined as:

Underlying event in charged jet evolution CDF data:  Phys. Rev. D, 65 (2002)  Jets defined in  -  space using a simple cone algorithm for charged particles having a p T > 0.5 GeV/c and |  | < 1 Physics at LHC - Prague Both PYTHIA and PHOJET describe characteristics of leading jet quite well. PYTHIA needs to be “tuned” to give “extra” event activity in the “underlying event”. Default PHOJET used.

Underlying event in charged jet evolution  More interesting is “transverse region”, defined in terms of azimuth . Physics at LHC - Prague  Particle density and energy flow in the “transverse regions” is very sensitive to the “underlying event” (beam-beam remnants, multiple interactions, ISR + FSR ) Good agreement between tuned-PYTHIA and PHOJET and data at CDF energies. LHC predictions differ by a factor of two in “transverse region” Need to investigate further: 1) Energy dependence 2) TransMin/Max etc. 3) PDFs Transverse region Also interesting to “split” transverse region into “TransMin” and “TransMax”. Hard components of UE should be in “Transmax”. Particle density in “transverse” region greater than that expected from MB data. However, what about “TransMin”?

Underlying event in charged jet evolution Physics at LHC - Prague Again, default PYTHIA does not give enough “activity” in “transverse region”. (Need to increase correlations in multiple interactions.) Tuned-PYTHIA and PHOJET agree well with data.  How does particle density in “transverse region” vary with leading jet p T ? PYTHIA predicts significant increase in event activity in the UE at the LHC. While tuned- PYTHIA and PHOJET both agree well with CDF data, their predictions at LHC energies differ by more than a factor of 2.

Summary Physics at LHC - Prague  Collecting “minimum bias” data is important for: 1) Studying general characteristics of proton-proton interactions 2) Making double (triple?) parton scattering cross section measurements 3) Understanding the underlying event in hard scatters  Extrapolating current model predictions to LHC energies suggests a factor of two uncertainty is justified for charged particle density in the underlying event for jets with p T > 10 GeV/c.  Studies over the next few years along with data from Tevatron and HERA should improve the predictions. However will ultimately need “minimum bias measurements” at the LHC. (First measurements at LHC?)  Multiple interactions gives a natural way of explaining the event activity for both minimum bias and the underlying event.  The multiple interaction models used in PYTHIA and PHOJET are able to describe both MB and UE data.  Measurements from different LHC experiments should be complementary:  LHC-b tracks charged particles to higher rapidities than ATLAS or CMS  ALICE tracks charged particles down to lower momenta than ATLAS or CMS