Perspectives of a Midrapidity Dimuon Program at RHIC: A Novel and Compact Muon Telescope Detector
Abstract
We propose a large-area, cost-effective Muon Telescope Detector (MTD) for the Solenoidal Tracker at RHIC (STAR) at mid-rapidity and for the next generation of detectors at a possible electron-ion collider. We utilize Multi-gap Resistive Plate Chambers with large modules and long readout strips (Long-MRPC) in the detector design. The results from cosmic ray and beam tests show the intrinsic timing and spatial resolution for a Long-MRPC are 60-70 ps and cm, respectively. The prototype performance of such a novel muon telescope detector at STAR indicates that muon identification at the transverse momentum of a few GeV/ can be achieved through the combined information of track matching with the MTD, ionization energy loss in the Time Projection Chamber, and time-of-flight measurements. A primary muon over secondary muon ratio of better than 1/3 can be achieved. This provides a promising device for future quarkonium programs and primordial dilepton measurements at RHIC. Simulations of the muon efficiency, the signal-to-background ratio of , the separation of 1S from 2S+3S states, and the electron-muon correlation from charm pair production in the RHIC environment are presented.
Keywords
Cite
@article{arxiv.0904.3774,
title = {Perspectives of a Midrapidity Dimuon Program at RHIC: A Novel and Compact Muon Telescope Detector},
author = {L. Ruan and G. Lin and Z. Xu and K. Asselta and H. F. Chen and W. Christie and H. J. Crawford and J. Engelage and G. Eppley and T. J. Hallman and C. Li and J. Liu and W. J. Llope and R. Majka and T. Nussbaum and J. Scheblein and M. Shao and R. Soja and Y. Sun and Z. Tang and X. Wang and Y. Wang},
journal= {arXiv preprint arXiv:0904.3774},
year = {2011}
}
Comments
18 pages, 10 figures, add more references, accepted by Journal of Physics G