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A uranium scintillator calorimeter with plastic-fibre readout

Identifieur interne : 000D60 ( Istex/Corpus ); précédent : 000D59; suivant : 000D61

A uranium scintillator calorimeter with plastic-fibre readout

Auteurs : M. G. Albrow ; G. Arnison ; J. Bunn ; D. Clarke ; C. Cochet ; P. Colas ; D. Dallman ; J. P. De Brion ; B. Denby ; E. Eisenhandler ; J. Garvey ; G. Grayer ; D. Hill ; M. Krammer ; E. Locci ; C. Pigot ; D. Robinson ; I. Siotis ; R. Sobie ; F. Szoncso ; P. Verrecchia ; T. S. Virdee ; H. D. Wahl ; A. Wildish ; C.-E. Wulz

Source :

RBID : ISTEX:53430687AFB1C608FBFDBE963B1A56B5CC68A9AA

Abstract

We have developed a method for reading out scintillator plates in a compact calorimeter using embedded wavelength-shifting fibres coupled to photomultipliers. A test calorimeter using this technique, with uranium plates as the passive medium, was placed in test beams of 1 to 80 GeV. Results on resolution, uniformity, and electron-pion discrimination are presented, as well as a discussion of compensation (the near-equality of electron and hadron responses).

Url:
DOI: 10.1016/0168-9002(87)91035-7

Links to Exploration step

ISTEX:53430687AFB1C608FBFDBE963B1A56B5CC68A9AA

Le document en format XML

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<div type="abstract" xml:lang="en">We have developed a method for reading out scintillator plates in a compact calorimeter using embedded wavelength-shifting fibres coupled to photomultipliers. A test calorimeter using this technique, with uranium plates as the passive medium, was placed in test beams of 1 to 80 GeV. Results on resolution, uniformity, and electron-pion discrimination are presented, as well as a discussion of compensation (the near-equality of electron and hadron responses).</div>
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<ce:sup>5)</ce:sup>
</ce:cross-ref>
</ce:author>
<ce:author>
<ce:given-name>C.-E.</ce:given-name>
<ce:surname>Wulz</ce:surname>
<ce:cross-ref refid="AFF6">
<ce:sup>6)</ce:sup>
</ce:cross-ref>
</ce:author>
<ce:affiliation id="AFF1">
<ce:label>1)</ce:label>
<ce:textfn>Rutherford Appleton Laboratory, Didcot, UK</ce:textfn>
</ce:affiliation>
<ce:affiliation id="AFF2">
<ce:label>2)</ce:label>
<ce:textfn>Queen Mary College, London, UK</ce:textfn>
</ce:affiliation>
<ce:affiliation id="AFF3">
<ce:label>3)</ce:label>
<ce:textfn>Centre d'Études Nucléaires, Saclay, France</ce:textfn>
</ce:affiliation>
<ce:affiliation id="AFF4">
<ce:label>4)</ce:label>
<ce:textfn>University of Birmingham, UK</ce:textfn>
</ce:affiliation>
<ce:affiliation id="AFF5">
<ce:label>5)</ce:label>
<ce:textfn>Imperial College, London, UK</ce:textfn>
</ce:affiliation>
<ce:affiliation id="AFF6">
<ce:label>6)</ce:label>
<ce:textfn>Inst. für Hochenergiephysik der Österreich. Akad. Wissensch., Vienna, Austria</ce:textfn>
</ce:affiliation>
<ce:affiliation id="AFF7">
<ce:label>7)</ce:label>
<ce:textfn>University of Victoria, BC, Canada</ce:textfn>
</ce:affiliation>
<ce:footnote id="FN1">
<ce:label></ce:label>
<ce:note-para>Now at Phys. dept., Florida State University, Tallahassee, Florida, USA.</ce:note-para>
</ce:footnote>
</ce:author-group>
<ce:date-received day="25" month="9" year="1986"></ce:date-received>
<ce:abstract>
<ce:section-title>Abstract</ce:section-title>
<ce:abstract-sec>
<ce:simple-para>We have developed a method for reading out scintillator plates in a compact calorimeter using embedded wavelength-shifting fibres coupled to photomultipliers. A test calorimeter using this technique, with uranium plates as the passive medium, was placed in test beams of 1 to 80 GeV. Results on resolution, uniformity, and electron-pion discrimination are presented, as well as a discussion of compensation (the near-equality of electron and hadron responses).</ce:simple-para>
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<abstract lang="en">We have developed a method for reading out scintillator plates in a compact calorimeter using embedded wavelength-shifting fibres coupled to photomultipliers. A test calorimeter using this technique, with uranium plates as the passive medium, was placed in test beams of 1 to 80 GeV. Results on resolution, uniformity, and electron-pion discrimination are presented, as well as a discussion of compensation (the near-equality of electron and hadron responses).</abstract>
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