[Rivet-svn] r1877 - trunk/data/plotinfo

blackhole at projects.hepforge.org blackhole at projects.hepforge.org
Tue Oct 6 13:38:31 BST 2009


Author: buckley
Date: Tue Oct  6 13:38:30 2009
New Revision: 1877

Log:
LaTeX corrections

Modified:
   trunk/data/plotinfo/UA1_1990_S2044935.plot

Modified: trunk/data/plotinfo/UA1_1990_S2044935.plot
==============================================================================
--- trunk/data/plotinfo/UA1_1990_S2044935.plot	Tue Oct  6 13:16:49 2009	(r1876)
+++ trunk/data/plotinfo/UA1_1990_S2044935.plot	Tue Oct  6 13:38:30 2009	(r1877)
@@ -17,57 +17,57 @@
 # END PLOT
 
 # BEGIN PLOT /UA1_1990_S2044935/d02-x01-y01
-Title=Invariant cross section $\mathrm{E} \frac{d^{3}\sigma}{dp^{3}}$ at $\eta =0$ and $\sqrt{s} = \unit{200}{\GeV}$
+Title=Invariant cross section $\mathrm{E} \mathrm{d}^{3}\sigma/\mathrm{d}p^{3}$ at $\eta =0$ and $\sqrt{s} = \unit{200}{\GeV}$
 XLabel=$p_{T}$
 YLabel=$\mathrm{E} \frac{d^{3}\sigma}{dp^{3}}$
 # END PLOT
 
 # BEGIN PLOT /UA1_1990_S2044935/d02-x01-y02
-Title=Invariant cross section $\mathrm{E} \frac{d^{3}\sigma}{dp^{3}}$ at $\eta =0$ and $\sqrt{s} = \unit{500}{\GeV}$
+Title=Invariant cross section $\mathrm{E} \mathrm{d}^{3}\sigma/\mathrm{d}p^{3}$ at $\eta =0$ and $\sqrt{s} = \unit{500}{\GeV}$
 XLabel=$p_{T}$
 YLabel=$\mathrm{E} \frac{d^{3}\sigma}{dp^{3}}$
 # END PLOT
 
 # BEGIN PLOT /UA1_1990_S2044935/d02-x01-y03
-Title=Invariant cross section $\mathrm{E} \frac{d^{3}\sigma}{dp^{3}}$ at $\eta =0$ and $\sqrt{s} = \unit{900}{\GeV}$
+Title=Invariant cross section $\mathrm{E} \mathrm{d}^{3}\sigma/\mathrm{d}p^{3}$ at $\eta =0$ and $\sqrt{s} = \unit{900}{\GeV}$
 XLabel=$p_{T}$
 YLabel=$\mathrm{E} \frac{d^{3}\sigma}{dp^{3}}$
 # END PLOT
 
 # BEGIN PLOT /UA1_1990_S2044935/d03-x01-y01
-Title=Cross section $\mathrm{E} \frac{d^{3}\sigma}{dp^{3}}$ at $\eta =0$ and $\sqrt{s} = \unit{900}{\GeV}$ ($\frac{dn_{ch}}{d\eta} = 0.8 \dots 4 $)
+Title=Cross section $\mathrm{E} \mathrm{d}^{3}\sigma/\mathrm{d}p^{3}$ at $\eta =0$ and $\sqrt{s} = \unit{900}{\GeV}$ ($\frac{dn_{ch}}{d\eta} = 0.8 \dots 4 $)
 XLabel=$p_{T}$
 YLabel=$\mathrm{E} \frac{d^{3}\sigma}{dp^{3}}$
 # END PLOT
 
 # BEGIN PLOT /UA1_1990_S2044935/d04-x01-y01
-Title=Cross section $\mathrm{E} \frac{d^{3}\sigma}{dp^{3}}$ at $\eta =0$ and $\sqrt{s} = \unit{900}{\GeV}$ ($\frac{dn_{ch}}{d\eta} = 4 \dots 8 $)
+Title=Cross section $\mathrm{E} \mathrm{d}^{3}\sigma/\mathrm{d}p^{3}$ at $\eta =0$ and $\sqrt{s} = \unit{900}{\GeV}$ ($\frac{dn_{ch}}{d\eta} = 4 \dots 8 $)
 XLabel=$p_{T}$
 YLabel=$\mathrm{E} \frac{d^{3}\sigma}{dp^{3}}$
 # END PLOT
 
 # BEGIN PLOT /UA1_1990_S2044935/d05-x01-y01
-Title=Cross section $\mathrm{E} \frac{d^{3}\sigma}{dp^{3}}$ at $\eta =0$ and $\sqrt{s} = \unit{900}{\GeV}$ ($\frac{dn_{ch}}{d\eta} > 8 $)
+Title=Cross section $\mathrm{E} \mathrm{d}^{3}\sigma/\mathrm{d}p^{3}$ at $\eta =0$ and $\sqrt{s} = \unit{900}{\GeV}$ ($\frac{dn_{ch}}{d\eta} > 8 $)
 XLabel=$p_{T}$
 YLabel=$\mathrm{E} \frac{d^{3}\sigma}{dp^{3}}$
 # END PLOT
 
 # BEGIN PLOT /UA1_1990_S2044935/d06-x01-y01
-Title=$\left< p_{T} \right>$ vs. $n_{ch}$ at $\sqrt{s} = \unit{200}{\GeV}$
+Title=$\langle p_{T} \rangle$ vs. $n_{ch}$ at $\sqrt{s} = \unit{200}{\GeV}$
 XLabel=$n_{ch}$
-YLabel=$\left< p_{T} \right>$
+YLabel=$\langle p_{T} \rangle$
 # END PLOT
 
 # BEGIN PLOT /UA1_1990_S2044935/d07-x01-y01
-Title=$\left< p_{T} \right>$ vs. $n_{ch}$ at $\sqrt{s} = \unit{900}{\GeV}$
+Title=$\langle p_{T} \rangle$ vs. $n_{ch}$ at $\sqrt{s} = \unit{900}{\GeV}$
 XLabel=$n_{ch}$
-YLabel=$\left< p_{T} \right>$
+YLabel=$\langle p_{T} \rangle$
 # END PLOT
 
 # BEGIN PLOT /UA1_1990_S2044935/d08-x01-y01
-Title=$\left< p_{T} \right>$ vs. $n_{ch}$ at $\sqrt{s} = \unit{63}{\GeV}$
+Title=$\langle p_{T} \rangle$ vs. $n_{ch}$ at $\sqrt{s} = \unit{63}{\GeV}$
 XLabel=$n_{ch}$
-YLabel=$\left< p_{T} \right>$
+YLabel=$\langle p_{T} \rangle$
 # END PLOT
 
 # BEGIN PLOT /UA1_1990_S2044935/d09-x01-y01
@@ -89,19 +89,19 @@
 # END PLOT
 
 # BEGIN PLOT /UA1_1990_S2044935/d12-x01-y01
-Title=$\left< \Sigma E_T \right>$ vs. $n_{ch}$ at $\sqrt{s} = \unit{200}{\GeV}$ and $|\eta|<2.5$
+Title=$\langle \Sigma E_T \rangle$ vs. $n_{ch}$ at $\sqrt{s} = \unit{200}{\GeV}$ and $|\eta|<2.5$
 XLabel=$n_{ch}$
-YLabel=$\frac{d \sigma}{d P_{t}}$
+YLabel=$\mathrm{d}\sigma/\mathrm{d}P_{t}}$
 # END PLOT
 
 # BEGIN PLOT /UA1_1990_S2044935/d12-x01-y02
-Title=$\left< \Sigma E_T \right>$ vs. $n_{ch}$ at $\sqrt{s} = \unit{500}{\GeV}$ and $|\eta|<2.5$
+Title=$\langle \Sigma E_T \rangle$ vs. $n_{ch}$ at $\sqrt{s} = \unit{500}{\GeV}$ and $|\eta|<2.5$
 XLabel=$n_{ch}$
-YLabel=$\frac{d \sigma}{d \phi}$
+YLabel=$\mathrm{d}\sigma/\mathrm{d}\phi}$
 # END PLOT
 
 # BEGIN PLOT /UA1_1990_S2044935/d12-x01-y03
-Title=$\left< \Sigma E_T \right>$ vs. $n_{ch}$ at $\sqrt{s} = \unit{900}{\GeV}$ and $|\eta|<2.5$
+Title=$\langle \Sigma E_T \rangle$ vs. $n_{ch}$ at $\sqrt{s} = \unit{900}{\GeV}$ and $|\eta|<2.5$
 XLabel=$n_{ch}$
-YLabel=$\frac{d \sigma}{d \eta}$
+YLabel=$\mathrm{d}\sigma/\mathrm{d}\eta}$
 # END PLOT


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