CRUNCHLOOPS

Towards systematization of NNLO theoretical predictions for advanced phenomenology at the LHC

 Coordinatore AGENCIA ESTATAL CONSEJO SUPERIOR DE INVESTIGACIONES CIENTIFICAS 

 Organization address address: CALLE SERRANO 117
city: MADRID
postcode: 28006

contact info
Titolo: Mr.
Nome: Alberto
Cognome: Sereno Alvarez
Email: send email
Telefono: +34 91 566 8852
Fax: +34 91 566 89 13

 Nazionalità Coordinatore Spain [ES]
 Totale costo 168˙896 €
 EC contributo 168˙896 €
 Programma FP7-PEOPLE
Specific programme "People" implementing the Seventh Framework Programme of the European Community for research, technological development and demonstration activities (2007 to 2013)
 Code Call FP7-PEOPLE-2011-IEF
 Funding Scheme MC-IEF
 Anno di inizio 2012
 Periodo (anno-mese-giorno) 2012-10-01   -   2014-09-30

 Partecipanti

# participant  country  role  EC contrib. [€] 
1    AGENCIA ESTATAL CONSEJO SUPERIOR DE INVESTIGACIONES CIENTIFICAS

 Organization address address: CALLE SERRANO 117
city: MADRID
postcode: 28006

contact info
Titolo: Mr.
Nome: Alberto
Cognome: Sereno Alvarez
Email: send email
Telefono: +34 91 566 8852
Fax: +34 91 566 89 13

ES (MADRID) coordinator 168˙896.40

Mappa


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predictions    duality    feynman    loop    nnlo    theoretical    physics    lhc    relation    integrals   

 Obiettivo del progetto (Objective)

'The physics program of the Large Hadron Collider at CERN will help us answer some of the most fundamental unresolved questions in physics. Any verification of present knowledge or solid proof of new physics will only come after copious efforts of comparing experimental data against accurate theoretical predictions. For most of the processes at the LHC, calculating perturbative corrections in quantum field theory at the next-to-leading order (NLO) is sufficient whereas for some processes next-to-next-to-leading order theoretical predictions (NNLO) are needed, a highly non trivial theoretical task. We propose to apply a novel technique, the Duality Relation between loop Feynman integrals and phase-space integrals, to the study of W pair jet production to NNLO at the LHC, an important process and currently beyond the state-of-the-art. Secondly, we propose to create a public library with the results of all the two-loop Feynman integrals necessary for some of the most important LHC processes that are needed to NNLO. Our two objectives are complementary and we expect that they will help towards the development of new NNLO partonic Monte Carlo event generators in our field. If the Duality Relation approach to phenomenological studies proves to be an optimal choice, as we believe, we will manage to succeed in having a unified treatment of the real and virtual radiation amplitudes paving the path towards the systematization of the LHC phenomenology to NNLO.'

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