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2017:groups:tools:contur_for_light_scalar_particles [2017/10/01 12:10]
jonathan.butterworth
2017:groups:tools:contur_for_light_scalar_particles [2017/10/11 23:47]
jonathan.butterworth
Line 49: Line 49:
  
 {{:​2017:​groups:​tools:​cl_78wzg_nso.png?​200|}} $(l^+l^-)$ or $(l + E_T^{\rm miss}) + \gamma$ {{:​2017:​groups:​tools:​cl_78wzg_nso.png?​200|}} $(l^+l^-)$ or $(l + E_T^{\rm miss}) + \gamma$
-{{:​2017:​groups:​tools:​cl_8metg_nso.png?​200|}} $E_T^{\rm miss} + \gamma$+{{:​2017:​groups:​tools:​cl_8metg_nso.png?​200|}} $E_T^{\rm miss} + \gamma ​(\gamma)$
 {{:​2017:​groups:​tools:​cl_78photons_nso.png?​200|}} Inclusive and di-photons {{:​2017:​groups:​tools:​cl_78photons_nso.png?​200|}} Inclusive and di-photons
  
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 Note that the sensitivity at low $M_\phi$ and $\Lambda$ is somewhat reduced, especially for the $E_T^{\rm miss} + \gamma$ channel. Presumably something to do with the angular distributions of the decay photons of the $\phi$, but to be studied... Note that the sensitivity at low $M_\phi$ and $\Lambda$ is somewhat reduced, especially for the $E_T^{\rm miss} + \gamma$ channel. Presumably something to do with the angular distributions of the decay photons of the $\phi$, but to be studied...
  
-There is still 95% exclusion even at the highest $\Lambda$ values studied. Would be interesting to see how far it goes...+There is still 95% exclusion even at the highest $\Lambda$ values studied. Would be interesting to see how far it goes. Update - not very far? Here's an 8 TeV run going to higher values. 
 + 
 +{{:​2017:​groups:​tools:​cl_8extended.png?​300|}}{{:​2017:​groups:​tools:​contur_8tev-cpe-extended.png?​300|}}
  
  
2017/groups/tools/contur_for_light_scalar_particles.txt · Last modified: 2017/10/11 23:47 by jonathan.butterworth