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   \textbf{\huge 
     \laura\ : a Dalitz plot fitter
   }
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 % Authors
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-John Back, 
+John Back,
 Tim Gershon,
 Paul Harrison,
-Thomas Latham\footnote{Corresponding author, email \href{mailto:T.Latham@warwick.ac.uk}{T.Latham@warwick.ac.uk}}\\
-Daniel O'Hanlon, 
+Thomas Latham,\footnote{Corresponding author, email \href{mailto:T.Latham@warwick.ac.uk}{T.Latham@warwick.ac.uk}}\\
+Daniel O'Hanlon,\footnote{Now at Sezione INFN di Bologna, Bologna, Italy}
 Wenbin Qian\\
 Department of Physics, University of Warwick, Coventry, United Kingdom \\
 
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 Pablo del Amo Sanchez\\
 LAPP, Universit\'{e} Savoie Mont-Blanc, CNRS/IN2P3, Annecy-Le-Vieux, France\\
 
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 Daniel Craik\\
 Massachusetts Institute of Technology, Cambridge, United States of America
 
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 Jelena Ilic\\
 STFC Rutherford Appleton Laboratory, Didcot, United Kingdom\\
 
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 Juan Otalora~Goicochea\\
 Universidade Federal do Rio de Janeiro (UFRJ), Rio de Janeiro, Brazil\\
 
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 Eugenia Puccio\\
 Stanford University, Stanford, United States of America \\
 
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 Rafael Silva~Coutinho\\
 Physik-Institut, Universit{\"a}t Z{\"u}rich, Z{\"u}rich, Switzerland
 
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 Mark Whitehead\\
 European Organization for Nuclear Research (CERN), Geneva, Switzerland
 
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 % Abstract -----------------------------------------------
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   \noindent
   The Dalitz plot analysis technique has become an increasingly important method in heavy flavour physics. 
   The \laura\ fitter has been developed as a flexible tool that can be used for Dalitz plot analyses in different experimental environments.
   Explicitly designed for three-body decays of heavy-flavoured mesons to spinless final state particles, it is optimised in order to describe all possible resonant or nonresonant contributions, and to accommodate possible \CP violation effects.
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