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\hypertarget{classTrkRigGeoCut}{ |
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\section{TrkRigGeoCut Class Reference} |
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\label{classTrkRigGeoCut}\index{TrkRigGeoCut@{TrkRigGeoCut}} |
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} |
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The geomagnetic rigidity cut. This cut discards an event whose rigidity modulus is less than a threshold rigidity, given by the geomagnetic cutoff rigidity (the Stoermer cutoff) for that event multiplied by a threshold coefficient. |
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{\tt \#include $<$TrkRigGeoCut.h$>$} |
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Inheritance diagram for TrkRigGeoCut::\begin{figure}[H] |
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\begin{center} |
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\leavevmode |
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\includegraphics[height=2cm]{classTrkRigGeoCut} |
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\end{center} |
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\end{figure} |
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\subsection*{Public Member Functions} |
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\begin{CompactItemize} |
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\item |
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\hyperlink{classTrkRigGeoCut_00e54e0aade802c1c44fcfde47e905d6}{TrkRigGeoCut} (const char $\ast$cutName, float thresholdCoeff) |
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\begin{CompactList}\small\item\em Constructor. \item\end{CompactList}\item |
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pam-fi |
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\hypertarget{classTrkRigGeoCut_074e6ecf968a39447bc868a79da213c7}{ |
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\hyperlink{classTrkRigGeoCut_074e6ecf968a39447bc868a79da213c7}{$\sim$TrkRigGeoCut} ()} |
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\label{classTrkRigGeoCut_074e6ecf968a39447bc868a79da213c7} |
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\begin{CompactList}\small\item\em Destructor. \item\end{CompactList}\item |
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int \hyperlink{classTrkRigGeoCut_d334792be6ca66d01d75bb2f86a57382}{Check} (PamLevel2 $\ast$event) |
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\begin{CompactList}\small\item\em The rigidity check. \item\end{CompactList}\item |
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pam-fi |
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\hypertarget{classTrkRigGeoCut_5b3e2d3037d140ae852bd02975842eb4}{ |
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float \hyperlink{classTrkRigGeoCut_5b3e2d3037d140ae852bd02975842eb4}{GetThresholdCoeff} ()} |
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\label{classTrkRigGeoCut_5b3e2d3037d140ae852bd02975842eb4} |
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pam-fi |
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\begin{CompactList}\small\item\em Returns the threshold coefficient. \item\end{CompactList}\end{CompactItemize} |
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\subsection{Detailed Description} |
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The geomagnetic rigidity cut. This cut discards an event whose rigidity modulus is less than a threshold rigidity, given by the geomagnetic cutoff rigidity (the Stoermer cutoff) for that event multiplied by a threshold coefficient. |
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CUT DEPENDENCIES: TrkPhSin (since \hyperlink{classTrkRigGeoCut}{TrkRigGeoCut} assumes the existence of a single physical track) |
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\subsection{Constructor \& Destructor Documentation} |
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\hypertarget{classTrkRigGeoCut_00e54e0aade802c1c44fcfde47e905d6}{ |
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\index{TrkRigGeoCut@{TrkRigGeoCut}!TrkRigGeoCut@{TrkRigGeoCut}} |
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\index{TrkRigGeoCut@{TrkRigGeoCut}!TrkRigGeoCut@{TrkRigGeoCut}} |
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\subsubsection[{TrkRigGeoCut}]{\setlength{\rightskip}{0pt plus 5cm}TrkRigGeoCut::TrkRigGeoCut (const char $\ast$ {\em cutName}, \/ float {\em thresholdCoeff})\hspace{0.3cm}{\tt \mbox{[}inline\mbox{]}}}} |
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\label{classTrkRigGeoCut_00e54e0aade802c1c44fcfde47e905d6} |
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Constructor. |
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\begin{Desc} |
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\item[Parameters:] |
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\begin{description} |
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\item[{\em cutName}]The cut's name. \item[{\em thresholdCoeff}]The threshold rigidity coefficient. \end{description} |
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\end{Desc} |
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\subsection{Member Function Documentation} |
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\hypertarget{classTrkRigGeoCut_d334792be6ca66d01d75bb2f86a57382}{ |
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\index{TrkRigGeoCut@{TrkRigGeoCut}!Check@{Check}} |
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\index{Check@{Check}!TrkRigGeoCut@{TrkRigGeoCut}} |
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\subsubsection[{Check}]{\setlength{\rightskip}{0pt plus 5cm}int TrkRigGeoCut::Check (PamLevel2 $\ast$ {\em event})\hspace{0.3cm}{\tt \mbox{[}virtual\mbox{]}}}} |
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\label{classTrkRigGeoCut_d334792be6ca66d01d75bb2f86a57382} |
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The rigidity check. |
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\begin{Desc} |
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\item[Parameters:] |
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\begin{description} |
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\item[{\em event}]The event to analyze. \end{description} |
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\end{Desc} |
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\begin{Desc} |
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\item[Returns:]\hyperlink{CommonDefs_8h_c857f4b76ae431837cbf61fd74863b6c}{CUTOK} if the rigidity modulus is greater than the geomagnetic cutoff rigidity times the threshold coefficient. |
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0 otherwise. \end{Desc} |
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Implements \hyperlink{classPamCut_a874600461950d1f2b75ce3938f91cbe}{PamCut}. |
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The documentation for this class was generated from the following files:\begin{CompactItemize} |
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\item |
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TrkCuts/TrkRigGeoCut/\hyperlink{TrkRigGeoCut_8h}{TrkRigGeoCut.h}\item |
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TrkCuts/TrkRigGeoCut/\hyperlink{TrkRigGeoCut_8cpp}{TrkRigGeoCut.cpp}\end{CompactItemize} |