dorsal/arxiv
View SchemaBeam Calorimeter Technologies
| Authors | R. Dollan, Ch. Grah, E. Kuznetsova, W. Lange, W. Lohmann, A. Stahl, K. Afanaciev, V. Drugakov, I. Emeliantchik |
|---|---|
| Categories | |
| ArXiv ID | physics/0507002 |
| URL | https://arxiv.org/abs/physics/0507002 |
Abstract
Two different technologies are considered for the Beam Calorimeters of the ILC detector. Simulation studies of the performance have been done for a diamond-tungsten sandwich calorimeter and for a homogeneous heavy element crystal calorimeter with optical fiber readout. Studies of the stability and the linearity of a polycrystalline diamond were done for the diamond-tungsten option. For the heavy crystal option the light yield reduction due to the wavelength shifting fiber readout was studied.
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"abstract": "Two different technologies are considered for the Beam Calorimeters of the\nILC detector. Simulation studies of the performance have been done for a\ndiamond-tungsten sandwich calorimeter and for a homogeneous heavy element\ncrystal calorimeter with optical fiber readout. Studies of the stability and\nthe linearity of a polycrystalline diamond were done for the diamond-tungsten\noption. For the heavy crystal option the light yield reduction due to the\nwavelength shifting fiber readout was studied.",
"arxiv_id": "physics/0507002",
"authors": [
"R. Dollan",
"Ch. Grah",
"E. Kuznetsova",
"W. Lange",
"W. Lohmann",
"A. Stahl",
"K. Afanaciev",
"V. Drugakov",
"I. Emeliantchik"
],
"categories": [
"physics.ins-det"
],
"title": "Beam Calorimeter Technologies",
"url": "https://arxiv.org/abs/physics/0507002"
},
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"type": "Model",
"variant": "snapshot-2026-03-01",
"version": "0.1.0"
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