ulaulaman.github.io/curriculum/pezzi/englishR.tex.backup

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\section{Adresses}
\begin{flushleft}
Via Paolo Lomazzo n.59,\\
20154, Milano, Italy\\
Cell: +39-3392315618\\
e-mail: gianluigi.filippelli@gmail.com; gianluigi.filippelli@zoho.com\\
\end{flushleft}
\section{Date and place of birth}
\begin{flushleft}
2nd February, 1977, Cosenza, Italy\\
Citizen: italian
\end{flushleft}
\section{Professional Experience}
\begin{CV}
\item[Jun 2011 - present] Instructional designer for Italian Astronomy Olimpiads at Osservatorio Astronomico di Brera (INAF), Milano
\item[Jan 2009 - present] Popular science blogger for {\em Science Backstage}\\(http://sciencebackstage.blogosfere.it/)
\item[Nov 2010 - Dec 2010] Physics and Math Teacher at the high school {\em Liceo Elio Vittorini}, Milano
\item[Oct 2010 - Jan 2011] Stage in e-learning at Osservatorio Astronomico di Brera (INAF), Milano
\item[Jul 2010] Summer Physics course at the high school {\em ITIS Galilei}, Milano
\item[Mar 2010 - Jun 2010] Math teacher at the high school {\em ITIS Galilei}, Milano
\item[Nov 2009] Physics teacher at the high school {\em ITIS Galilei}, Milano (two week)
\item[Jul 2009] Summer Math course at the high school {\em ITIS Feltrinelli}, Milano (two week)
\item[Nov 2008 - Jun 2009] Math teacher at the high school {\em ITIS Feltrinelli}, Milano
\item[Oct 2008] Physic's teacher at the high school {\em Liceo Linguistico Levi}, Seregno (Milano) (two week)
\item[Oct 2008] Physic's teacher at the high school {\em Mosé Bianchi}, Monza (Milano) (two week)
\item[Jan - Jun 2008] Physics teacher at the high school {\em Liceo Linguistico Levi}, Seregno (Milano)
\item[Apr - May 2007] Didactical activity at Liceo Scientifico {\em G.B.Scorza}, Cosenza: presentation of some experimental activity and realization of multimedial cards.
\item[2006 - 2007] Exercitation course of Calcolo 2 ({\em Calculus}) for Engineering at Universita' della Calabria.
\item[Mar 2004] Guide for the extension {\em Semplice e Complesso} at Universita' della Calabria.
\item[May 2002] Creation of web pages http://www.fis.unical.it/gruppi/alteenergie/ about the misuration of life time of $\mu$ lepton.
\end{CV}
\section{Curriculum Studiorum}
\begin{CV}
\item[Jan 2010-Feb 2011] Master in e-learning with thesis about application of Moodle platform in physics
\item[Nov - Dec 2008] Programming course: Visual Basics 6, C\#, SQL Server
\item[12th Dec 2006] Ph.D. in Physics, with the thesis {\em Rappresentazioni proiettive: Applicazioni nella teoria quantistica}, tutors Prof. G.Nistico', Dott. D.Giuliano.
\item[2003 - 2006] Doctoral student in Physics at Universita' degli Studi della Calabria.
\item[15th May 2002] Master degree in Physics with the thesis {\em Produzione esaltata di coppie $e^+ e^-$ nelle collisioni tra ioni pesanti relativistici}, supervisor Prof. R.Alzetta.
\end{CV}
\section{Research activity}
\subsection*{Ph.D thesis}
In my Ph.D. thesis, {\em Rappresentazioni proiettive: Applicazioni nella teoria quantistica} ({\em Ray Representations: Application in quantum theory}), I have realized one unitary treatment of the ray representations theory, to develop applications in quantum theory.\\
In particular, I treated Bargmann's theory (1954), adding Grigore's (1996), Simms' (1968), Varadarajan's (1970) contributes about the determination of ray representations of a given Lie group, and Karpilovsky's (1994) contribute about the ray representation character.\\
These contributes, with Bargmann's study about abelian group and pseudo-orthogonal transformation group, are used in the study of rotation and Galilean groups.\\
In the first case, in according to Wigner (1939), Hurley (1966) and Altmann (1979), I present the emergence of semi-integer spin, so in the second case I study the Galilean group first in (3+1) dimensions (Bargmann, 1954), second in (2+1) dimensions (Grigore, 1995; Bose, 1995), and finally in (1+1) dimensions (Doebner and Mann, 1995).\\
In this last case, Doebner and Mann calculate the phase exponent of Galilean group with three parameters and determine the time depending infinitesimal generators. I extend the Doebner-Mann procedure to (2+1) and (3+1) dimensions, calculating a Galilean ray representation explicitly time depending.\\
The results of my work was presented ad 2007 Integrable Systems' Prague Conference, with the talk {\em Time dependent quantum generators for the Galilei group}. I submitted a paper with the same title to {\em Reports on Mathematical Physics}.\\
At the end of my Ph.D. work I studied the Wawrzycki's generalization (2004) of Bargmann's ray representations theory finding some points that need further deepening.\\\\
{\bf Master Degree thesis}\\
In my Master Degree thesis, {\em Produzione esaltata di coppie $e^+ e^-$ nelle collisioni tra ioni pesanti relativistici}, I calculated the theoretical cross-section for the collision between heavy relativistic ions in order to explain the production of the couples $e^+ e^-$ using Preparata's theory (see G.Preparata, {\em QED Coherence in Matter}, World Scientific, 1995). I found that the results obteined according to Preparata's theory disagree with experimental data (see R.J.Porter, S.Beedoe, R.Bossingham et al. {\em Dielectron Cross Section Measurements in Nucleus-Nucleus Reactions at 1.0A GeV}, Phys. Rev. Lett. {\bf 79}, 1997).\\\\
\subsection*{Publications}
\begin{itemize}
\item Ph.D thesis: {\em Rappresentazioni proiettive: Applicazioni alla teoria quantistica}, 2006, Universita' della Calabria
%\item {\em Time dependent quantum generators for the Galilei group}, submitted to {\em Reports on Mathematical Physics}
\end{itemize}
\subsubsection*{Preprint}
\begin{itemize}
\item {\em Time dependent quantum generators for the Galilei group} (http://www.mendeley.com/c/3850914701/p/5024701/filippelli-time-dependent-quantum-generators-for-the-galilei-group/)
\item {\em Moodle for Italian Astronomy Olimpiad} (http://www.mendeley.com/c/3850918871/p/5024701/filippelli-moodle-for-italian-astronomy-olimpiad/)
\end{itemize}
\subsection*{International Conferences}
\begin{itemize}
\item {\bf Milano 2009}: Wordcamp
\item {\bf Prague 2007}: XVI Integrable systems and quantum symmetries
\item {\bf Bari 2004}: XII convegno di Meccanica Statistica e Teoria dei Campi non Perturbativa
\item {\bf Cortona 2004}: Convegno Informale di Fisica Teorica - (XXVI edizione)
\end{itemize}
\subsubsection*{Ph.D Schools}
\begin{itemize}
\item {\bf Otranto 2005}: Scuola Nazionale di Otranto: XVIII Seminario Nazionale di Fisica Nucleare e Subnucleare
\item {\bf Otranto 2003}: Scuola Nazionale di Otranto: XVI Seminario Nazionale di Fisica Nucleare e Subnucleare
\end{itemize}
%
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%\section{Language knowledge}
%\begin{table}[h] %\centering
%\begin{tabular}{p{2cm}>{\bfseries}p{2.5cm}p{3.5cm}}
%& Italian & alnguage mother\\
%& Inglese & Ascolto: B1\\
%& & Lettura: C1\\
%& & Interazione: B2\\
%& & Produzione orale: B1\\
%& & Scritto: B2\\
%\end{tabular}
%\end{table}
%
\vspace{2\baselineskip}
\noindent Milano, \today