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Presentations / LBD_meeting / Autopresentation / mchrzasz.tex
@Marcin CHrzaszcz Marcin CHrzaszcz on 5 Oct 2017 9 KB autoshit done
\documentclass[11 pt,xcolor={dvipsnames,svgnames,x11names,table}]{beamer}

\usepackage[english]{babel}
\usepackage{polski}


\usetheme[
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% \setmainfont{Gill Sans Light}		% Prettier, but harder to read

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% \newcommand{\handwriting}{}	% If you prefer no special handwriting font or don't have augie

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\usepackage{graphicx}
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\usepackage{amsmath}
\usepackage{amsfonts}
\usepackage{amssymb}
\usepackage{bm}
\usepackage{colortbl}
\usepackage{mathrsfs} 			% For Weinberg-esque letters
\usepackage{cancel}				% For "SUSY-breaking" symbol
\usepackage{slashed}            % for slashed characters in math mode
\usepackage{bbm}                % for \mathbbm{1} (unit matrix)
\usepackage{amsthm}				% For theorem environment
\usepackage{multirow}			% For multi row cells in table
\usepackage{arydshln} 			% For dashed lines in arrays and tables
\usepackage{siunitx}
\usepackage{xhfill}
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\usepackage{tikz}

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\usepackage{hepnicenames}

% Drawing a line
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% % % % % % % % % % % % % % % % % % % % % % % % % % % % % % % % % % %
\usepackage{tikzfeynman}		% For Feynman diagrams
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% http://www.felixl.de/commu.pdf
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\usetikzlibrary{decorations.pathreplacing}  % For curly braces
% http://www.math.ucla.edu/~getreuer/tikz.html
\usepackage{pgffor}							% For repeating patterns

\usetikzlibrary{decorations.pathmorphing}	% For Feynman Diagrams
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% TIKZ - for block diagrams,
% from http://www.texample.net/tikz/examples/control-system-principles/
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\tikzstyle{block} = [draw, rectangle,
minimum height=3em, minimum width=6em]




\usetikzlibrary{backgrounds}
\usetikzlibrary{mindmap,trees}	% For mind map
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\graphicspath{{images/}}	% Put all images in this directory. Avoids clutter.

% SOME COMMANDS THAT I FIND HANDY
% \renewcommand{\tilde}{\widetilde} % dinky tildes look silly, dosn't work with fontspec
\newcommand{\comment}[1]{\textcolor{comment}{\footnotesize{#1}\normalsize}} % comment mild
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\def\la{\langle}
\def\ra{\rangle}
\def\e{{\rm e}}
\def\Br{{\rm Br}}
\def\LcTopmumu{\Lambda_c^{+} \to p \mu^+ \mu^-}
\def\Lc{\Lambda_c^{+}}
\def\mumu{\mu\mu}
\newcommand{\BRof}[1]{\ensuremath{{\cal B}(#1)}\xspace}

\def\LcTopphi{\Lc \to p \Pphi (\mumu)}
\def\Lcpomegano{\Lc \to p \omega}




\def\ARROW{{\color{JungleGreen}{$\Rrightarrow$}}\xspace}
\def\ARROWR{{\color{WildStrawberry}{$\Rrightarrow$}}\xspace}
\def\pt{p_T}
\def\mevc{MeV/c}
\def\mevcc{MeV/c^2}
\def\gevc{GeV/c}
\def\gevcc{GeV/c^2}
\author{ {Marcin Chrzaszcz} (CERN)}
\institute{UZH}
\title[Autobiography]{Autobiography}

\date{25 September 2014}


\begin{document}
\tikzstyle{every picture}+=[remember picture]

{
\setbeamertemplate{sidebar right}{\llap{\includegraphics[width=\paperwidth,height=\paperheight]{bubble2}}}

\iffalse
\begin{frame}[c]%{\phantom{title page}}
\begin{center}
\begin{center}
	\begin{columns}
		\begin{column}{0.75\textwidth}
			\flushright \bfseries \Large {Search for the suppressed $\Lambda_c^{+} \to p \mu^+ \mu^-$ decay and observation of the  $\Lambda_c^{+} \to p \omega$ decay}
		\end{column}
                \begin{column}{0.02\textwidth}
                  {~}
                  \end{column}
                \begin{column}{0.23\textwidth}
                 % \hspace*{-1.cm}
                  \vspace*{-3mm}
                  \includegraphics[width=0.6\textwidth]{lhcb-logo}
                  \end{column}

	\end{columns}
\end{center}
	\quad
	\vspace{3em}
\begin{columns}
\begin{column}{0.44\textwidth}
\flushright \vspace{-2.8em} {  \fontspec{Zapfino} Marcin Chrzaszcz\\\vspace{-0.1em}\small \href{mailto:mchrzasz@cern.ch}{mchrzasz@cern.ch}}

\end{column}
\begin{column}{0.53\textwidth}
\hspace{2.0cm}
\includegraphics[height=1.6cm]{cern}
\end{column}
\end{columns}

\vspace{1em}
	\footnotesize{\large With M. Jezabek, T. Lesiak, B. Nowak, M. Witek (IFJ PAN)}
\vspace{0.5em}

	\textcolor{normal text.fg!50!Comment}{Tuesday meeting, CERN\\September 26, 2017}
\end{center}
\end{frame}
}

\fi
\begin{frame}{Marcin ChrzÄ…szcz}
\vspace{0.5em}
	\begin{minipage}{\textwidth}
	
\begin{columns}

\column{0.8\textwidth}
\only<1>{
\ARROW History:
\begin{itemize}
\item Summer Student at DESY
\item Summer Student at CERN
\item PhD Institute of Nuclear Physics, Krakow
\item Visiting scientists at INFN Pisa
\item PostDoc at University of Zurich
\item Now at CERN
\end{itemize}
}
\only<2>{
\ARROW Scientific collaborations:
\begin{itemize}
\item BaBar
\item SuperB
\item LHCb
\item HFAG 
\item GAMBIT
\end{itemize}


}
\column{0.2\textwidth}
\begin{center}
\includegraphics[width=0.9\textwidth]{me.jpg}
\end{center}


\end{columns}	
\vspace{1cm}
	\only<2>{
	\begin{small}
Working/Worked on
\begin{itemize}
\item  $\tau \to 3\mu$, $B \to K^{\ast} e \mu$,  $B \to \chi(\mu\mu) K$,  $B \to K^{\ast}(1430) \mu \mu$, $\Lambda_b \to \Lambda_c \ell \nu$, $\Lambda_c \to p \mu \mu$ (LHCb)
\item $\tau$ properties averages (HFAG)
\item BSM fits (GAMBIT)
\item Silicon vertex and Instrumental Flux return (SuperB)
\item Some phenomenology work for $b \to s \ell \ell$ and TAUOLA generator
\end{itemize}
\end{small}


	
	}
	
	\end{minipage}
		\vspace*{2.cm}
\end{frame}
%%%%%%%%%%%%%%%%%%%%%%%%%%%%









\end{document}