Curriculum Vitae et Studiorum Gianluca Stefanucci
Curriculum Vitae et Studiorum Gianluca Stefanucci
Curriculum Vitae et Studiorum Gianluca Stefanucci
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<strong>Curriculum</strong> <strong>Vitae</strong> <strong>et</strong> <strong>Studiorum</strong><br />
<strong>Gianluca</strong> <strong>Stefanucci</strong><br />
Personal Data<br />
Nationality: Italian<br />
Address: Phys. Dept., Univ. of Rome “Tor Vergata”, Via della Ricerca Scientifica 1, 00133 Rome (Italy).<br />
Phones: +39 06 7259 4579 (office)<br />
FAX: +39 06 2023507<br />
e-mail: gianluca.stefanucci@roma2.infn.it<br />
Webpage: http://people.roma2.infn.it/stefanucci<br />
Research Activity<br />
Time-dependent quantum transport within Time-Dependent Density Functional Theory and NonEquilibrium<br />
Green’s Functions. Non-conventional pairing mechanisms in Hubbard and related models. Auger<br />
spectroscopy.<br />
Education<br />
Nov 06 - current time: Researcher at University of Rome “Tor Vergata”, Italy.<br />
Dec 05 - Oct 06: Postdoc fellowship financed by Sfb 658 with Prof. E. K. U. Gross at the Freie Universität<br />
Berlin, Germany.<br />
Jun 04 - Nov 05: Postdoc fellowship in the European N<strong>et</strong>work of Excellence (NoE) NANOQUANTA with<br />
Profs. Carl-Olof Almbladh and Ulf von Barth at University of Lund, Sweden.<br />
Mar 03 - May 04: Postdoc fellowship in the European Research Training N<strong>et</strong>work (RTN) NANOPHASE<br />
with Profs. Carl-Olof Almbladh and Ulf von Barth at University of Lund, Sweden.<br />
Feb 22, 2002: Doctorate degree in Theor<strong>et</strong>ical Physics at University of Rome “Tor Vergata”, Italy.<br />
Feb 02 - Feb 03: INFM postdoc fellowship with Prof. Michele Cini at University of Rome “Tor Vergata”,<br />
Italy.<br />
Nov 01 - Dec 01: INFM fellowship for temporary collaboration with Prof. Michele Cini at University of<br />
Rome “Tor Vergata”, Italy.<br />
Oct 98 - Oct 01: PhD studies in Theor<strong>et</strong>ical Physics at University of Rome “Tor Vergata”, Italy under<br />
the supervision of Prof. Michele Cini. Rated first in the admission tests.<br />
Oct 10, 1998: “Laurea” degree in Theor<strong>et</strong>ical Physics at University of Rome “Tor Vergata”, Italy, Magna<br />
Cum Laude, grade average 29.8/30.<br />
Feb 97 - Oct 98: Thesis work under the supervision of Prof. Augusto Sagnotti and of Prof. Michele<br />
Cini.<br />
Oct 92 - Feb 97: Undergraduate studies at University of Rome “Tor Vergata”, Italy.<br />
Honors<br />
1993: “Enrico Persico” Student Prize (National Academy of Arts, Sciences and L<strong>et</strong>ters, “Accademia<br />
Nazionale dei Lincei”).<br />
Teaching Experience<br />
- Assistant lecturer in Computerphysik in the Physics Department of Freie Universität (Berlin) (year<br />
2006).<br />
- Assistant lecturer in Elements of theor<strong>et</strong>ical Physics in the Physics Department of Tor Vergata (Roma)<br />
(years 2006/07, 2007/08).<br />
- Lecturer in Mathematical M<strong>et</strong>hods in the Physics Department of Tor Vergata (Roma) (years 2007/08,<br />
2008/09).<br />
Other Scientific Activities<br />
- Referee for the following journals: J. of Phys. A, J. of Phys. B, J. of Phys. C, Phys. Rev. A, Phys.<br />
Rev B, Phys. Rev. L<strong>et</strong>t..<br />
- Core Research Team Leader of the European Theor<strong>et</strong>ical Spectroscopy Facility (ETSF).<br />
1
Invited Seminars<br />
Oct 01 2007: Forschungszentrum, Karlsruhe, Germany.<br />
Sep 19 2005: Tor Vergata University, Rome, Italy.<br />
Apr 21 2004: Chalmer University - Göteborg, Sweden.<br />
Sep 20 2003: Donostia International Physics Center - San Sebastian, Spain.<br />
Feb 07 2003: University of Augsburg, Germany.<br />
Dec 11 2002: Max Planck Institute - Stuttgart, Germany.<br />
Dec 04 2002: Polytechnique of Turin, Italy.<br />
Nov 08 2002: University of Lund, Sweden.<br />
May 18 2001: University of Pisa, Italy.<br />
Talks in School/Conferences<br />
[1] Nanoscience and Nanotechnology: Frascati - Italy 20-23 October 2008 (invited).<br />
[2] 13th ETSF/Nanoquanta Conference - Theor<strong>et</strong>ical Spectroscopy and Quantum Transport: Pugnochiuso<br />
- Italy 23-27 September 2008.<br />
[3] Nanoscience and Nanotechnology: Frascati - Italy 15-16 October 2007.<br />
[4] Quantum Transport and non-adiabatic electron evolution from first principles approaches: Lyon -<br />
France 04-08 December 2006 (invited).<br />
[5] Time dependent Density-Functional Theory: Prospects and Applications: Benasque - Spain 06-10<br />
September 2006 (invited).<br />
[6] Advances in Computational Materials Science: Ringberg - Germany 21-25 June 2006 (invited).<br />
[7] Young Researchers’ Me<strong>et</strong>ing: Rome - Italy 3-5 May 2006.<br />
[8] 40 Years of the GW Approximation for the Electronic Self-Energy: Achievements and Challenges:<br />
Bad Honnef - Germany 12-55 September 2005.<br />
[9] Progress in Nonequilibrium Green’s Functions III: Kiel - Germany 22-25 Aug 2005.<br />
[10] Second NANOQUANTA young researcher’s me<strong>et</strong>ing: Berlin - Germany 01-04 May 2005.<br />
[11] Nanotubes and Nanostructures: Frascati - Italy 14-20 October 2004.<br />
[12] Theory and Modeling of Electronic Excitations in Nanoscience: Maratea - Italy 19-23 September<br />
2004 (invited).<br />
[13] Ab-Initio Electron Excitations Theory: Towards Systems of Biological Interest: San Sebastian -<br />
Spain 21-24 September 2003 (invited).<br />
[14] M2S-HTCS: Rio de Janeiro - Brasil 25-30 May 2003.<br />
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Publications<br />
[1] “A many-body approach to quantum transport dynamics: Initial correlations and memory effects”<br />
P<strong>et</strong>ri Myöhänen, Adrian Stan, <strong>Gianluca</strong> <strong>Stefanucci</strong>, and Robert van Leeuwen<br />
Europhys. L<strong>et</strong>t. 84, 67001 (2008).<br />
[2] “On CosterKronig line shapes of solids”<br />
Michele Cini, Enrico Perf<strong>et</strong>to, <strong>Gianluca</strong> <strong>Stefanucci</strong>, and Simona Ugenti<br />
J. Phys. C (Condensed Matter) 20, 474209 (2008).<br />
[3] “Spin-flip Scattering in Time-Dependent Transport through a Quantum Dot: Enhanced Spin<br />
Current and Inverse Tunneling Magn<strong>et</strong>oresistance”<br />
Enrico Perf<strong>et</strong>to, <strong>Gianluca</strong> <strong>Stefanucci</strong>, and Michele Cini<br />
Phys. Rev. B 78, 155301 (2008).<br />
[4] “The Role of Bound States in Time-Dependent Quantum Transport”<br />
Elham Khosravi, Stefan Kurth, <strong>Gianluca</strong> <strong>Stefanucci</strong>, and E. K. U. Gross<br />
Appl. Phys. A 93, 355 (2008).<br />
[5] “Ultrafast manipulation of electron spins in a double quantum dot device: A real-time numerical<br />
and analytical study”<br />
<strong>Gianluca</strong> <strong>Stefanucci</strong>, Enrico Perf<strong>et</strong>to, and Michele Cini<br />
Phys. Rev. B 78, 075425 (2008).<br />
[6] “The Line Shape of L 2 − L 2 L 3 M 45 − M 45 M 45 (M 45 ) satellites in the Auger spectra of solids”<br />
Michele Cini, Enrico Perf<strong>et</strong>to, <strong>Gianluca</strong> <strong>Stefanucci</strong>, and Simona Ugenti<br />
J. Phys.: Conf. Ser. 100, 072019 (2008).<br />
[7] “A Time-Dependent Approach to Electron Pumping in Open Quantum Systems”<br />
<strong>Gianluca</strong> <strong>Stefanucci</strong>, Stefan Kurth, Angel Rubio, and E. K. U. Gross<br />
Phys. Rev. B 77, 075339 (2008).<br />
[8] “Theory of Coster-Kronig Preceded Auger Processes in Solids”<br />
Michele Cini, Enrico Perf<strong>et</strong>to, <strong>Gianluca</strong> <strong>Stefanucci</strong>, and Simona Ugenti<br />
Phys. Rev. B 76, 205412 (2007).<br />
[9] “Bound States in Ab Initio Approaches to Quantum Transport: a Time-Dependent Formulation”<br />
<strong>Gianluca</strong> <strong>Stefanucci</strong><br />
Phys. Rev. B 75, 195115 (2007).<br />
[10] “Time-Dependent Transport Phenomena”<br />
<strong>Gianluca</strong> <strong>Stefanucci</strong>, Stefan Kurth, E. K. U. Gross and Angel Rubio<br />
"Molecular and Nano Electronics: Analysis, Design, and Simulation",<br />
J. Seminario (Ed.), Elsevier (2006).<br />
[11] “Classical Nuclear Motion in Quantum Transport”<br />
Claudio Verdozzi, <strong>Gianluca</strong> <strong>Stefanucci</strong> and Carl-Olof Almbladh<br />
Phys. Rev. L<strong>et</strong>t. 97, 046603 (2006).<br />
[12] “On the Pairing Mechanism in Doped Armchair Carbon Nanotubes”<br />
Enrico Perf<strong>et</strong>to, Michele Cini and <strong>Gianluca</strong> <strong>Stefanucci</strong><br />
‘‘Focus on Nanotube research’’,<br />
Delores A. Martin (Ed.), Nova Science Publishers, New York (2006).<br />
[13] “Time-Dependent Transport through Single Molecules: Nonequilibrium Greens Functions”<br />
<strong>Gianluca</strong> <strong>Stefanucci</strong>, Carl-Olof Almbladh, Stefan Kurth, E. K. U. Gross, Angel<br />
Rubio, Robert van Leeuwen, Nils Erik Dahlen and Ulf von Barth<br />
Lect. Notes Phys. 706, 479 (2006).<br />
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[14] “Introduction to the Keldysh Formalism”<br />
Robert van Leeuwen, Nils Erik Dahlen, <strong>Gianluca</strong> <strong>Stefanucci</strong>, Carl-Olof Almbladh<br />
and Ulf von Barth<br />
Lect. Notes Phys. 706, 33 (2006).<br />
[15] “An exact ab-initio Theory of Quantum Transport using TDDFT and Nonequilibrium Green’s<br />
Functions”<br />
<strong>Gianluca</strong> <strong>Stefanucci</strong> and Carl-Olof Almbladh<br />
J. Phys.: Conf. Ser. 35, 17 (2006).<br />
[16] “Conserving Approximations in Time-Dependent Density Functional Theory”<br />
Ulf von Barth, Niels Erik Dahlen, Robert van Leeuwen and <strong>Gianluca</strong> <strong>Stefanucci</strong><br />
Phys. Rev. B 72, 235109 (2005).<br />
[17] “Time-Dependent Quantum Transport: a Practical Scheme Using Density Functional Theory”<br />
Stefan Kurth, <strong>Gianluca</strong> <strong>Stefanucci</strong>, Carl-Olof Almbladh, Angel Rubio and E. K.<br />
U. Gross<br />
Phys. Rev. B 72, 035308 (2005).<br />
[18] “W = 0 pairing in Hubbard and related models of two-dimensional superconductors”<br />
Adalberto Balzarotti, Michele Cini, Enrico Perf<strong>et</strong>to and <strong>Gianluca</strong> <strong>Stefanucci</strong><br />
J. Phys. C (Condensed Matter) 16, R1387 (2004).<br />
[19] “Time-Dependent Quantum Transport: an Exact Formulation Based on TDDFT”<br />
<strong>Gianluca</strong> <strong>Stefanucci</strong> and Carl-Olof Almbladh<br />
Europhys. L<strong>et</strong>t. 67, 14 (2004).<br />
[20] “Time-Dependent Partition-Free Approach in Resonant Tunneling Systems”<br />
<strong>Gianluca</strong> <strong>Stefanucci</strong> and Carl-Olof Almbladh<br />
Phys. Rev. B 69, 195318 (2004).<br />
[21] “Evidence for W = 0 Pairing in Repulsive Hubbard Square and Hexagonal Geom<strong>et</strong>ries”<br />
Enrico Perf<strong>et</strong>to, <strong>Gianluca</strong> <strong>Stefanucci</strong>, Agnese Callegari and Michele Cini<br />
Physica C 408-410, 236 (2004).<br />
[22] “Pairing and Tunneling in Repulsive Models”<br />
Enrico Perf<strong>et</strong>to, <strong>Gianluca</strong> <strong>Stefanucci</strong>, Agnese Callegari and Michele Cini<br />
"Progress in Condensed Matter Physics",<br />
G. Mondio and L. Silipigni (Eds.), Conf. Proc. SIF 84, (2004).<br />
[23] “Repulsion-Sustained Supecurrent and Flux Quantization in Rings of Symm<strong>et</strong>ric Hubbard Cluster”<br />
Agnese Callegari, Michele Cini, Enrico Perf<strong>et</strong>to and <strong>Gianluca</strong> <strong>Stefanucci</strong><br />
Phys. Rev. B 68, 153103 (2003).<br />
[24] “Interplanar Hopping of W = 0 Bound Pairs”<br />
Agnese Callegari, Enrico Perf<strong>et</strong>to, <strong>Gianluca</strong> <strong>Stefanucci</strong> and Michele Cini<br />
Int. J. Mod. Phys. B 17, 567 (2003).<br />
[25] “Symm<strong>et</strong>ric Hubbard Systems with Superconducting Magn<strong>et</strong>ic Response”<br />
Agnese Callegari, Michele Cini, Enrico Perf<strong>et</strong>to and <strong>Gianluca</strong> <strong>Stefanucci</strong><br />
Eur. Phys. J. B 34, 455 (2003).<br />
[26] “On-Site Repulsion as the Origin of Pairing in Carbon Nanotubes and Intercalated Graphite”<br />
Enrico Perf<strong>et</strong>to, <strong>Gianluca</strong> <strong>Stefanucci</strong> and Michele Cini<br />
Eur. Phys. J. B 30, 139 (2002).<br />
[27] “Spin-Disentangled Exact Diagonalization of Repulsive Hubbard Systems: Superconducting Pair<br />
Propagation”<br />
Michele Cini, <strong>Gianluca</strong> <strong>Stefanucci</strong>, Enrico Perf<strong>et</strong>to and Agnese Callegari<br />
J. Phys. C (Condensed Matter) 14, L709 (2002).<br />
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[28] “W = 0 Pairing in (N, N) Carbon Nanotubes away from Half Filling”<br />
Enrico Perf<strong>et</strong>to, <strong>Gianluca</strong> <strong>Stefanucci</strong> and Michele Cini<br />
Phys. Rev. B 66, 165434 (2002).<br />
[29] “Antiferromagn<strong>et</strong>ism in the Exact Ground State of the Half Filled Hubbard Model on the Compl<strong>et</strong>e<br />
Bipartite Graph”<br />
<strong>Gianluca</strong> <strong>Stefanucci</strong> and Michele Cini<br />
Phys. Rev. B 66, 115108 (2002).<br />
[30] “Analytic Correlation Functions of the Two-Dimensional Half Filled Hubbard Model at Weak<br />
Coupling”<br />
<strong>Gianluca</strong> <strong>Stefanucci</strong> and Michele Cini<br />
J. Phys. C (Condensed Matter) 14, 2653 (2002).<br />
[31] “Introduction to Renormalization Group and Ward Identities in Critical Phenomena and in Fermi<br />
and Bose Liquids”<br />
Sergio Caprara, Roberta Citro, Carlo Di Castro and <strong>Gianluca</strong> <strong>Stefanucci</strong><br />
AIP Conf. Proc. 629, 3 (2002).<br />
[32] “Pairing Mechanism in the Doped Hubbard Antiferromagn<strong>et</strong>: the 4 × 4 Model as a Test Case”<br />
Michele Cini, Enrico Perf<strong>et</strong>to and <strong>Gianluca</strong> <strong>Stefanucci</strong><br />
Eur. Phys. J. B 20, 91 (2001).<br />
[33] “The W = 0 Pairing Mechanism from Repulsive Interactions in Symm<strong>et</strong>ric 2d Models”<br />
Michele Cini and <strong>Gianluca</strong> <strong>Stefanucci</strong><br />
‘‘Electrons and Photons in Solids’’,<br />
G. Grosso, G. Larocca, and M. Tosi (Eds.), Quaderni della Classe di Scienze della Scuola Normale<br />
Superiore, Pisa (2001); also cond-mat/0204311.<br />
[34] “Antiferromagn<strong>et</strong>ism of the Two-Dimensional Hubbard Model at Half Filling: the Analytic Ground<br />
State for Weak Coupling”<br />
Michele Cini and <strong>Gianluca</strong> <strong>Stefanucci</strong><br />
J. Phys. C (Condensed Matter) 13, 1279 (2001).<br />
[35] “Exact Ground State of the Two-Dimensional Hubbard Model at Half Filling for U = 0 + ”<br />
Michele Cini and <strong>Gianluca</strong> <strong>Stefanucci</strong><br />
Solid State Comm. 117, 451 (2001).<br />
[36] “Canonical Transformation of the Hubbard Model and W = 0 Pairing: Comparison with Exact<br />
Diagonalization Results”<br />
Michele Cini, Adalberto Balzarotti, Raffaella Brun<strong>et</strong>ti, Maria Gimelli and<br />
<strong>Gianluca</strong> <strong>Stefanucci</strong><br />
Int. J. Mod. Phys. B 14, 2994 (2000).<br />
[37] “Pairing in the Hubbard model; the Cu 5 O 4 Cluster versus the CuO Plane”<br />
Michele Cini, Adalberto Balzarotti and <strong>Gianluca</strong> <strong>Stefanucci</strong><br />
Eur. Phys. J. B 14, 269 (2000).<br />
[38] “Superconducting Pairs in Clusters Model of the Cu-O Plane: Further Properties”<br />
Michele Cini, <strong>Gianluca</strong> <strong>Stefanucci</strong> and Adalberto Balzarotti<br />
Int. J. Mod. Phys. B 13, 1195 (1999).<br />
[39] “W = 0 Pairing in Cu-O Clusters and in the Plane”<br />
Michele Cini, <strong>Gianluca</strong> <strong>Stefanucci</strong> and Adalberto Balzarotti<br />
Eur. Phys. J. B 10, 293 (1999).<br />
[40] “Theory of Pairing in the Cu-O Plane: Three Band Hubbard Model and Beyond”<br />
Michele Cini, <strong>Gianluca</strong> <strong>Stefanucci</strong> and Adalberto Balzarotti<br />
AIP Conf. Proc. 483, 26 (1999).<br />
5
[41] “Canonical Transformation of the Three-Band Hubbard Model and Hole Pairing”<br />
Michele Cini, <strong>Gianluca</strong> <strong>Stefanucci</strong> and Adalberto Balzarotti<br />
Solid State Comm. 109, 229 (1999).<br />
6