The performance of prototype vacuum phototriodes in the first full sized supercrystal array for the CMS ECAL endcaps

Author:

Apollonio M.,Barber G.,Bell K.W.,Britton D.,Brooke J.,Brown R.M.,Bourotte J.,Camanzi B.,Cockerill D.J.A.,Davies G.,Devitsin E.,Ergun G.,Gninenko S.,Golubev N.,Goussev Y.,Haguenauer M.,Head R.,Heath H.,Hobson P.R.,Imrie D.C.,Inyakin A.,Katchanov V.,Kirsanov M.,Lintern A.,Lodge A.,Mcleod E.,Nash S.,Newbold D.,Ukhanov M.,Postoev V.,Patalakha D.,Presland A.,Probert M.,Seez C.,Semeniouk I.,Seliverstov D.,Smith B.,Sproston M.,Tapper R.,Tchuiko B.

Publisher

Elsevier BV

Subject

Instrumentation,Nuclear and High Energy Physics

Reference10 articles.

1. The Electromagnetic Calorimeter Project, Technical Design Report, CERN/LHCC 97-33, 1997.

2. Test results from a prototype lead tungstate crystal calorimeter with vacuum phototriode readout for the CMS experiment

3. Stephenson discrete component preamplifier with a shaping time of 27ns (33ns measured) and a maximum input level of 2.107 electrons, designed at the Rutherford Appleton Laboratory

4. Active printed circuit board, designed by ETH Zurich, plugged into the front of the ADC module to reduce common mode noise

5. B. Camanzi, et al., Tests on 1999 vacuum phototriodes for the CMS ECAL endcaps, CMS Note 2000/010

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