Peter Schury edited section_Plan_for_use_of__.tex  over 8 years ago

Commit id: d8ea5ef9c580bde117511dcb51bdf0c60d9bc51a

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\begin{table}   \begin{tabular}{ c c c c c c }  Reaction & $E_\mathrm{proj}$ [MeV] & $\sigma$ [nb] & reference & Rate [day$^{-1}$] & Duration [hrs] \\   $^{208}$Pb($^{40}$Ar,3n)$^{245}$Fm & 198 & 15 & \cite{Nitschke_1979}  & 25 & 43 \\ $^{208}$Pb($^{40}$Ar,4n)$^{244}$Fm & 207 & 3 & \cite{Nitschke_1979}  & 5 & 217 \\ \end{tabular}   \caption{Reactions with $^{40}$Ar beam. The rate refers to the rate at the MRTOF assuming current efficiency. The duration refers to the duration required to achieve $\delta m/m$=10$^{-6}$ based on $R_\mathrm{m}$=150,000.}   \label{tblArBeam} 

\begin{table}   \begin{tabular}{ c c c c c c }  Reaction & $E_\mathrm{proj}$ [MeV] & $\sigma$ [nb] & reference & Rate [day$^{-1}$] & Duration [hrs] \\   $^{205}$Tl($^{48}$Ca,1n)$^{252}$Md & 206 & 76 & \cite{Chatillon_2007}  & 122 & 8.8 \\ $^{205}$Tl($^{48}$Ca,2n)$^{251}$Md & 214.1 & 760 & \cite{Chatillon_2007}  & 1220 & 0.9 \\ $^{205}$Tl($^{48}$Ca,3n)$^{250}$Md & 222.2 & 76 & \cite{Chatillon_2007}  & 122 & 8.8 \\ \hline  $^{208}$Pb($^{48}$Ca,1n)$^{255}$No & 212.2 & 260 & \cite{Oganessian_2001}  & 410 & 2.6 \\ $^{208}$Pb($^{48}$Ca,2n)$^{254}$No & 216.0 & 2344 & \cite{Oganessian_2001}  & 3693 & 0.3 \\ $^{207}$Pb($^{48}$Ca,2n)$^{253}$No & 216.7 & 1310 & \cite{Oganessian_2001}  & 2074 & 0.5 \\ $^{206}$Pb($^{48}$Ca,2n)$^{252}$No & 217.1 & 515 & \cite{Oganessian_2001}  & 819 & 1.3 \\ $^{206}$Pb($^{48}$Ca,3n)$^{251}$No & 226.2 & 30 & \cite{Oganessian_2001}  & 48 & 22 \\ \hline  $^{209}$Bi($^{48}$Ca,1n)$^{256}$Lr & 214.1 & 61 & \cite{He_berger_2007}  & 96 & 11.2 \\ $^{209}$Bi($^{48}$Ca,2n)$^{255}$Lr & 217.4 & 437 & \cite{He_berger_2007}  & 685 & 1.6 \\ $^{209}$Bi($^{48}$Ca,3n)$^{254}$Lr & 228.5 & 28 & \cite{He_berger_2007}  & 44 & 24 \\ $^{209}$Bi($^{48}$Ca,4n)$^{253}$Lr & 240 & 1 & \cite{He_berger_2007}  & 2 & 680 \\ \end{tabular}   \caption{Reactions with 1~p$\mu$A $^{48}$Ca beam. The rate refers to the rate at the MRTOF assuming current efficiency. The duration refers to the duration required to achieve $\delta m/m$=10$^{-6}$ based on $R_\mathrm{m}$=150,000.}   \label{tblCaBeam} 

\begin{table}   \begin{tabular}{ c c c c c c }  Reaction & $E_\mathrm{proj}$ [MeV] & $\sigma$ [nb] & reference & Rate [day$^{-1}$] & $\delta m/m$ [48 hrs] \\   $^{238}$U($^{22}$Ne,4n)$^{256}$No & 105 & 10 & \cite{Donets_1966}  & 12 & 1.3$\times 10^{-6}$ \\ $^{238}$U($^{22}$Ne,3n)$^{257}$No & 103 & 1.9 & & 2 & 3$\times 10^{-6}$ \\   \end{tabular}   \caption{Reactions with 3~p$\mu$A $^{22}$Ne beam. The rate refers to the rate at the MRTOF assuming current efficiency.}