J. Tao FCPPL workshop, Paris 21-25, March 2012 1 IPNL/IHEP IPNL/IHEP collaboration project Photon studies at CMS Junquan Tao On behalf of the IPN Lyon.

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Presentation transcript:

J. Tao FCPPL workshop, Paris 21-25, March IPNL/IHEP IPNL/IHEP collaboration project Photon studies at CMS Junquan Tao On behalf of the IPN Lyon and IHEP CMS groups 5 th FCPPL Workshop March 21, 2012

2 Note/Apology: In many cases, despite significant progress, results can not yet be shown since not yet formally approved (CMS Rules) Outline  A brief history about the collaboration  Motivation: The H   search  Activities on the photon-related studies  Summary and Conclusion  Acknowledgements

3 IHEP Beijing  IPN Lyon: (4persons) TAO Junquan (Doctoral Student)—January- May 2007 (IN2P3) TAO Junquan (Doctoral Student)—January- May 2007 (IN2P3) ZHANG Zhen (Doctoral Student)— November 2007-May 2008 (FCPPL) ZHANG Zhen (Doctoral Student)— November 2007-May 2008 (FCPPL) TAO Junquan (Postdoc)—March-August 2009 (PICS 4162) TAO Junquan (Postdoc)—March-August 2009 (PICS 4162) XIAO Hong (Doctoral Student)—January- July 2010 (PICS 4162) XIAO Hong (Doctoral Student)—January- July 2010 (PICS 4162) FAN Jiawei (Doctoral Student)---April- October 2011 (PICS 4162) FAN Jiawei (Doctoral Student)---April- October 2011 (PICS 4162) XIAO Hong (Doctoral Student)---June-July 2011 (FCPPL) XIAO Hong (Doctoral Student)---June-July 2011 (FCPPL) IPN Lyon  IHEP Beijing: Nicolas CHANON (Doctoral Student)— March-May 2009 (FCPPL) Nicolas CHANON (Doctoral Student)— March-May 2009 (FCPPL) Hugues BRUN (Doctoral Student)— October-December 2010 (FCPPL) Hugues BRUN (Doctoral Student)— October-December 2010 (FCPPL) Olivier BONDU (Doctoral Student)– April- May 2011 (FCPPL) Olivier BONDU (Doctoral Student)– April- May 2011 (FCPPL) + participation to the Organising committees of the prototype workshop at IHEP and to the 1 st, 2 nd, 3 rd, 4 th and 5 th FCPPL workshops  January 2006: Agreement to explore possible collaboration on CMS physics analysis after the visit of F. LE DIBERDER to IHEP  July 2006: First visit of IPNL physicists and Director Bernard ILLE to IHEP FAN Jiawei (Doctoral Student)—May-Nov. 2012) (FCPPL 2012 proposal) + applied for co-phD student (FCPPL/CSC scholarship 2012) Louis SGANDURRA (Doctoral Student)-Oct- Nov. 2012) (FCPPL 2012 proposal)

4 Observed exclusion at 95% CL (Moriond2012): Tevatron: 100<M H <106GeV 147<M H <179GeV CMS: 127.5<M H <600GeV ATLAS: 110<M H <117.5GeV 118.5<M H <122.5GeV 129<M H <539GeV Survive at 95% CL: 117.5<M H <127.5GeV excluding 118.5<M H <122.5GeV Moriond 2012

5  Photon reconstruction: Clusterisation, Photon Commissioning, Photon Energy Scale and Energy Corrections using Z    Technique development: Prompt photon and non-prompt photon (  /  0 ) discrimination   +X Differential Cross-section Measurement  Impact of higher-order calculations on kinematical observables in  processes, contributed to H   analysis Activities: photon-related studies

6 Supercluster and Photon Commissioning ( ): (O. BONDU, H. BRUN, M. LETHUILLIER, S. GASCON, J. TAO, H. XIAO, Z. ZHANG) ( ): (O. BONDU, H. BRUN, M. LETHUILLIER, S. GASCON, J. TAO, H. XIAO, Z. ZHANG) - Check understanding of key observables for photon reconstruction  (~80nb-1) : - Cluster constituent multiplicites - Cluster constituent multiplicites - Cluster shapes used to assign energy determination method, to derive energy corrections and photon identification - Cluster shapes used to assign energy determination method, to derive energy corrections and photon identification - Isolation energies used for photon identification - Isolation energies used for photon identification - Results made public for ICHEP2010 (EGM and EGM ) Loose Photon Id

7 Photon Energy Scale & Photon ID efficiency « Certified » photons from Z   FSR ( ): (C. BATY, O. BONDU, H. BRUN, M. LETHUILLIER, S. GASCON, L. SGANDURRA, J. TAO, Z. ZHANG) - Isotropic source of relatively high-pT  enabling extraction of - Photon energy scale - Photon energy scale - Photon id efficiency: electron veto efficiency - Photon id efficiency: electron veto efficiency - - Photon energy correction (2011 data) - Photon trigger efficiency photon energy scale was used to estimate systematic error for : - first Measurement of the W  and Z  inclusive cross- sections with 2010 dataset (EWK , Phys. Lett. B 701 (2011) ) - Vgamma analysis with 2011 data (EWK , Preapproved in CMS) Electron veto efficiency was used in the H   analysis (HIG , HIG , HIG and submitted to Physics Letters B arXiv: , HIG , HIG )

8 Photon Energy Scale with Z   FSR See more details from Olivier Bondu’s presentation tomorrow public document CMS DPS -2011/008 Photon scale agrees with expectations at the 1% level in EB, ~3% in EE with 2010 data

9   discrimination   discrmination (2008-…): (H. BRUN, N. CHANON, G. CHEN, M. LETHUILLIER, S. GASCON, J. TAO, M. YANG, Z. ZHANG, H. Xiao) for both converted and non-converted photons   discrmination (2008-…): (H. BRUN, N. CHANON, G. CHEN, M. LETHUILLIER, S. GASCON, J. TAO, M. YANG, Z. ZHANG, H. Xiao) for both converted and non-converted photons Exploit particular cluster and shower shape observables proper to our crystal calorimeter, in a MLP NN -For a ‘tighter’ photon Id than current cutbased Id based on isolation -For the measurement of the SM backgrounds to H   :  + X and  + X (see next) -For direct application to MVA analysis for the H   search -For direct application to MVA analysis for the H   search still a major challenge to this analysis for us. Nominal shower shape of π 0 ( in fact 2γ) Shape of 2 γ EM showers ICHEP2010

 + X DIFFERENTIAL  MEASUREMENT 10  + X differential cross-section measurement (2010-…): (H. BRUN, N. CHANON, G. CHEN, M. LETHUILLIER, S. GASCON, J. TAO, H. XIAO, J. FAN)  + X differential cross-section measurement (2010-…): (H. BRUN, N. CHANON, G. CHEN, M. LETHUILLIER, S. GASCON, J. TAO, H. XIAO, J. FAN) - Use a data-driven ‘template’ method along the lines of the CMS  + X cross-section measurement - Compare to pQCD predictions 2010 data analysis, work together with the CEA saclay group “the modified ECAL isolation method”: Observables binning, trigger efficiency, reconstruction efficiency and so on.   discrmination Trying again with NN template (from   discrmination )method (and other templates) for 2011 data analysis (Hong Xiao) NNLO: 2gammaNNLO Accepted by JHEP 2010 data Big difference to NLO prediction 10 arXiv v1 D. de Florian, L. Cieri et al arXiv: (JHEP 01 (2012) 133) LHC-Higgs XS WG YR2

11 H   analysis: Impact of higher-order calculations on kinematical observables in 2  processes H   analysis: Impact of higher-order calculations on kinematical observables in 2  processes (2007-…): (O. BONDU, N. CHANON, M. LETHUILLIER, S. GASCON, J. Tao, Y. Shen) (2007-…): (O. BONDU, N. CHANON, M. LETHUILLIER, S. GASCON, J. Tao, Y. Shen) - Implemented doubly-differential reweighting scheme with dynamical k-factors (NLO/LO) for H   signal and diphoton background - Contributing to LHC-Higgs-XS working group (cut-dependent k-factors) qT LHC-Higgs XS WG YR2 arXiv v1 qT

12 Photon-related analysis 2012  2012 LHC running will be at 8TeV, L~15 fb -1   final status physics analyses  Z  final status physics analyses Z->  More statistics of purity high pT photon source for photonID … H->Z  (MC study by Zhen Zhang (2008), now Yuqiao Shen): - Similar production method to H->  - Not included in 2011 Higgs Search N ew resonance? (W ˊ ± ->  ˊ ±  ˊ 0,  ˊ 0 ->Z  )  (  +X) measurement - Differential cross section: more observables - Ratio of cross section 8TeV/7TeV - Doubly differential measurement H->  improvements - Any benefits of PF Photons ? - Isolation improvements in PhotonID - Shower shapes NN in PhotonID - continue work with theorists on improved SM direct photon spectrum predictions and their use in the Hgg search … Any new resonance? (W ˊ ± ->  ˊ ±  ˊ 0,  ˊ 0 ->  ) - Need higher PT/E photon studies “The LHC Phenomenology of Vectorlike Confinement” JHEP 1004 (2010) 128

13 Summary and Conclusions  We continue to make good progress in direct photon measurements, photon “ infrastructure ” (photon commissioning and reconstruction, calibration and identification) and in the H→γγ search through our cooperation efforts, which have continued to expand  We look forward to continue our efforts, which make good use of our groups ’ complementarities  Almost all this photon-related work is now contributed by both of our groups  more and more common activities

14 Many thanks to: F. Le Diberder and Chen Hesheng for their initiatives in helping us get our collaboration efforts started To the IN2P3/CNRS and IHEP-CAS for helping us to continue, and in particular to the FCPPL directorate and steering committee To the local organizing committee of this workshop for the wonderful hospitality and working environment Acknowledgements Acknowledgements

15 Backup

16 Photon Commissioning Loose Photon Id

17 Photon Energy Scale Measurement input to W , Z  cross-section Measurements See more details from Olivier Bondu’s presentation tomorrow

18 Theoretical Predictions RESBOS LHAPDF-compatible Balazs, Berger, Mrenna, Yuan, hep- ph/ , 1997 DIPHOX V1.3 LHAPDF-compatible Binoth, Guillet, Pilon, Werlen, hep- ph/ , 2000 gamma2MC, NLO Now LHAPDF-compatible! Bern, Dixon, Schmidt, hep- ph/ , frag : DIPHOX only (NLO) ‏ Resbos only BORN + FRAG (and NLO corrections) ‏ BOX (and NLO corrections) ‏ FIXED ORDER : NLO NLO with NNLL Resummation DIPHOX+gamma2MC contains the most complete NLO treatment -> 2010 analysis ResBos for 2011 data analysis, 2gammaNNLO? 1-frag : - LO, effectively in Resbos - NLO in Diphox Any news will be from Workshop on Photon Physics and Simulation at Hadron Colliders”, Paris, 30 March 2012