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Fine-granularity electromagnetic calorimeter using plastic scintillator strip-array

For the future linear collider calorimetry, fine-granularity is indispensable for energy measurements based on particle flow algorithm, which could achieve better energy resolution for jets than the conventional method. To explore the possibility for such a calorimeter using scintillator, an electro...

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Published in:Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment Accelerators, spectrometers, detectors and associated equipment, 2006-02, Vol.557 (2), p.460-478
Main Authors: Nagano, A., Yamauchi, S., Matsunaga, H., Kim, S., Matsumoto, T., Sekiguchi, K., Uchida, N., Yamada, Y., Yamamoto, S., Evtoukhovitch, P., Fujii, Y., Garutti, E., Iba, S., Itoh, S., Kajino, F., Kalinnikov, V., Kallies, W., Kanzaki, J., Kawagoe, K., Kishimoto, S., Miyata, H., Mzavia, D., Nakajima, N., Nakamura, R., Ono, H., Samoilov, V., Sanchez, A.L.C., Takeshita, T., Tamura, Y., Tsamalaidze, Z.
Format: Article
Language:English
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Summary:For the future linear collider calorimetry, fine-granularity is indispensable for energy measurements based on particle flow algorithm, which could achieve better energy resolution for jets than the conventional method. To explore the possibility for such a calorimeter using scintillator, an electromagnetic calorimeter test module, made of scintillator-strips and lead plates, was constructed and tested with test beams. Performance of the test module is presented in this article, in terms of the shower profile studies as well as energy and spatial measurements.
ISSN:0168-9002
1872-9576
DOI:10.1016/j.nima.2005.11.095