Design and Beam Test Results for the 2D Projective sPHENIX Electromagnetic Calorimeter Prototype
Abstract
sPHENIX is a new experiment under construction for the Relativistic Heavy Ion Collider at Brookhaven National Laboratory which will study the quark-gluon plasma to further the understanding of QCD matter and interactions. A prototype of the sPHENIX electromagnetic calorimeter (EMCal) was tested at the Fermilab Test Beam Facility in Spring 2018 as experiment T-1044. The EMCal prototype corresponds to a solid angle of centered at pseudo-rapidity . The prototype consists of scintillating fibers embedded in a mix of tungsten powder and epoxy. The fibers project back approximately to the center of the sPHENIX detector, giving 2D projectivity. The energy response of the EMCal prototype was studied as a function of position and input energy. The energy resolution of the EMCal prototype was obtained after applying a position dependent energy correction and a beam profile correction. Two separate position dependent corrections were considered. The EMCal energy resolution was found to be based on the hodoscope position dependent correction, and based on the cluster position dependent correction. These energy resolution results meet the requirements of the sPHENIX physics program.
Keywords
Cite
@article{arxiv.2003.13685,
title = {Design and Beam Test Results for the 2D Projective sPHENIX Electromagnetic Calorimeter Prototype},
author = {C. A. Aidala and S. Altaf and R. Belmont and S. Boose and D. Cacace and M. Connors and E. Desmond and J. Frantz and E. A. Gamez and N. Grau and J. S. Haggerty and A. Hodges and J. Huang and Y. Kim and M. D. Lenz and W. Lenz and N. A. Lewis and E. J. Mannel and J. D. Osborn and D. V. Perepelitsa and M. Phipps and R. Pisani and S. Polizzo and A. Pun and M. L. Purschke and C. Riedl and T. Rinn and A. C. Romero Hernandez and M. Sarsour and Z. Shi and A. M. Sickles and C. Smith and S. Stoll and X. Sun and E. Thorsland and F. Vassalli and X. Wang and C. L. Woody},
journal= {arXiv preprint arXiv:2003.13685},
year = {2021}
}
Comments
9 pages, 9 figures, 3 tables. Published in IEEE Transactions on Nuclear Science (vol. 68, no. 2, pp. 173-181, Feb. 2021). Revisions over previous version in response to referee and editor comments