Difference between revisions of "Twin Tubes"

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== What are Twin Tubes? ==
 
== What are Twin Tubes? ==
The precision measurements of muons in ATLAS are done by Monitored Drift Tubes (MDT's). The whole muon spectrometer will reach precision smaller than 80 <math>\mu m\,</math> in the bending direction of the magnetic field.
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The precision measurements of muons in ATLAS are done by Monitored Drift Tubes (MDT's). The whole muon spectrometer will reach precision smaller than 80 <math>\mu m</math> in the bending direction of the magnetic field. Many corrections need to be done to get the actual drift-time from measured signals. The correction for the delay due to the signal propagation along the tube turns out to be one of the larger corrections. The longer the signal has to travel along the wire the larger the correction, so outer chambers particularly 5m-long BOL's need precise measurement of the hit position along the tube. In the original design of ATLAS the position of the hit along the tube is measured by trigger chambers (RPC's). However the '''twin tube''' concept enables us to measure the propagation correction using MDTs themselves.

Revision as of 11:36, 29 June 2006

What are Twin Tubes?

The precision measurements of muons in ATLAS are done by Monitored Drift Tubes (MDT's). The whole muon spectrometer will reach precision smaller than 80 in the bending direction of the magnetic field. Many corrections need to be done to get the actual drift-time from measured signals. The correction for the delay due to the signal propagation along the tube turns out to be one of the larger corrections. The longer the signal has to travel along the wire the larger the correction, so outer chambers particularly 5m-long BOL's need precise measurement of the hit position along the tube. In the original design of ATLAS the position of the hit along the tube is measured by trigger chambers (RPC's). However the twin tube concept enables us to measure the propagation correction using MDTs themselves.