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Emanuele Pace, professore ordinario di Fisica Nucleare e Subnucleare dal 2002, Universita' di Roma Tor Vergata.

1971-81 borse di studio – contratto di ricerca, Catania, Roma La Sapienza

1981-88 Ricercatore, La Sapienza

1988-2002 Professore Associato di Fisica dei Neutroni, Tor Vergata

2009-12 Presidente e 2012-15 Coordinatore dei Corsi di Studi in Fisica, Tor Vergata

2012-2013 Membro della Commissione per l'Abilitazione scientifica Nazionale in Fisica Teorica

Coordinatore locale di progetti PRIN nel 1997, 1999, 2001, 2003, ha partecipato a un progetto 2008.

Ha studiato lo y-scaling nella diffusione inclusiva di elettroni da nuclei definendo correttamente la variabile e la funzione di scaling. Dal 1992 studia la diffusione di elettroni polarizzati da 3He e 3H polarizzati proponendo procedure per estrarre il fattore di forma (ff) magnetico e la funzione di struttura di spin del neutrone, usate dai gruppi sperimentali. Dal 1994 sviluppa modelli a quark per adroni nella dinamica hamiltoniana light-front (LFHD) per descrivere ff di mesoni pseudoscalari, nucleoni e transizioni alle risonanze barioniche e ha studiato in LFHD le proprieta' di una corrente elettro-debole Poincare' covariante per sistemi di particelle interagenti. 

Ha studiato la diffusione profondamente inelastica di neutroni da molecole.

Dal 2002 studia i ff em degli adroni nelle regioni tempo e spazio con un formalismo covariante, sottolineando il ruolo di componenti al di la' della valenza, e ha proposto una proiezione tridimensionale della corrente che soddisfa l'identita' di Ward-Takahashi.

Ha studiato le distribuzioni partoniche generalizzate del pione e le distribuzioni di impulso longitudinale e trasverso dei quark per pione, mesoni vettori neutri e nucleoni.

Studia processi profondamente inelastici semi-inclusivi su 3He con interazione nello stato finale per estrarre informazioni sulla struttura del neutrone. Ha proposto una funzione spettrale light-front, covariante per trasformazioni di Poincare' per studiare in modo accurato la struttura nucleare.

E' autore di 110 articoli su giornali internazionali con referee e di piu' di 70 contributi in Atti di Conferenze, ha piu' di 3200 citazioni, indice Hirsh 33 su Google Scholar ed e' referee per Eur. Phys. J. A, Nucl. Phys., Few-Body Syst., Phys. Rev.

Emanuele Pace, Nuclear and Subnuclear Physics full professor since 2002, Rome Tor Vergata University.

1971- 81 Fellowships - research contract, Catania, Roma La Sapienza

1981-88 Researcher, La Sapienza

1988-2002 Neutron Physics Associate Professor, Rome Tor Vergata University

2009-2012 President and 2012-2015 coordinator of Corso di Studi in Fisica, Rome Tor Vergata University

2012-2013 Member of National Board for Scientific Habilitation in Theoretical Physics

Local coordinator of approved 1997, 1999, 2001, 2003 PRIN projects, did participate to an approved 2008 project.

He studied 'y-scaling' in inclusive electron scattering by nuclei with proper definitions of the scaling variable and scaling function used by experimental groups. Since 1992 he studies polarized electron scattering by polarized 3He and 3H targets proposing procedures to extract the neutron magnetic form factor (ff) and the neutron spin structure function currently used by experimental groups. From 1994 he develops hadron quark models in the light-front Hamiltonian dynamics (LFHD) to describe ff of pseudoscalar mesons, nucleons and transitions to baryonic resonances and studied within LFHD the properties of a Poincare' covariant electro-weak current for interacting particle systems.

He studied neutron deep inelastic scattering off molecules.

From 2002 he studies the hadron em ff in timelike and spacelike regions with a covariant formalism, stressing the role of components beyond the valence one and proposed a light-front tridimensional projection of the current which satisfies the Ward-Takahashi identity.

The pion generalized parton distributions and longitudinal and transverse quark momentum distributions for pion, neutral vector mesons and nucleons were investigated, stressing the role of the one-gluon-exchange dominance at short distances.

He currently studies semi-inclusive deep inelastic processes on 3He including the final state interaction to extract information on neutron structure. He proposed a Poincare' covariant light-front spectral function to accurately investigate nuclear structure.

Emanuele Pace is author of 110 articles in international journals with referees and of more than 70 contributions in Conference Proceedings, has a total of more than 3200 citations, an Hirsh index equal to 33 in Google Scholar and acts as a referee for Eur. Phys. J. A, Nucl. Phys., Few-Body Syst., Phys. Rev., P.Rev.Lett.

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