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The Study of Multi-Layer sTGC Test System for ATLAS Phase-I upgrade
/ Li, Feng (Hefei, CUST) ; Wang, Xinxin (Hefei, CUST) ; Miao, Peng (Hefei, CUST) ; Zhou, Shuang (Hefei, CUST) ; Zhang, Zhilei (Hefei, CUST) ; Geng, Tianru (Hefei, CUST) ; Liu, Shengquan (Hefei, CUST) ; Jin, Ge (Hefei, CUST)
A completely New Small Wheel (NSW) will be constructed for ATLAS Phase-1 upgrade. [...]
arXiv:1806.09052.
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2018. - 3 p.
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An sTGC Prototype Readout System for ATLAS New-Small-Wheel Upgrade
/ Miao, Peng (USTC, Hefei) ; Li, Feng (USTC, Hefei) ; Liu, ShengQuan (USTC, Hefei) ; Zhang, ZhiLei (USTC, Hefei) ; Geng, Tianru (USTC, Hefei) ; Wang, Xinxin (USTC, Hefei) ; Zhou, Shuang (USTC, Hefei) ; Jin, Ge (USTC, Hefei)
This paper presents a readout system designed for testing the prototype of Small-Strip Thin Gap Chamber (sTGC), which is one of the main detector technologies used for ATLAS New-Small-Wheel Upgrade. [...]
arXiv:1806.08969.
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2018. - 3 p.
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Design and testing of an sTGC ASIC interface board for the ATLAS New Small Wheel upgrade
/ Wang, Xu (CUST, SKLPDE ; Hefei, CUST ; Michigan U.) ; Guan, Liang (Michigan U.) ; Sun, Siyuan (Michigan U.) ; Zhou, Bing (Michigan U.) ; Zhu, Junjie (Michigan U.) ; Jin, Ge (CUST, SKLPDE ; Hefei, CUST)
The ATLAS experiment will replace the present Small Wheel (SW) detector with a New Small Wheel detector (NSW) aiming to improve the performance of muon triggering and precision tracking in the endcap region at the High-Luminosity LHC. Small-strip Thin Gap Chamber (sTGC) is one of the two new detector technologies used in this upgrade. [...]
arXiv:2110.12469.-
2022-04-01 - 11 p.
- Published in : Nucl. Instrum. Methods Phys. Res., A 1028 (2022) 166326
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Understand ATLAS NSW Thin Gap Chamber from Garfield Simulation
/ Chapman, J (Michigan U.) ; Dai, T (Michigan U.) ; Diehl, E (Michigan U.) ; Feng, H (Michigan U.) ; Guan, L (Michigan U. ; Hefei, CUST) ; Mikenberg, G (Weizmann Inst.) ; Smakhtin, V (Weizmann Inst.) ; Yu, J M (Michigan U.) ; Zhou, B (Michigan U.) ; Zhu, J (Michigan U.) et al.
The LHC will be upgraded in several phases with the goal of obtaining an instantaneous lumi- nosity of 5-7 x 10^34 cm-2s-s at the center of mass energy of 14 TeV and integrated luminosity of 3000 fb-1. In order to profit from the high luminosity and high energy runs of the LHC, the ATLAS collaboration plans to upgrade the present endcap small wheel muon spectrometer to im- prove the muon triggering as well as precision tracking. [...]
2014 - 4 p.
- Published in : PoS EPS-HEP2013 (2013) 093
Fulltext: PDF; External link: POS
In : EPS-HEP 2013 European Physical Society Conference on High Energy Physics, Stockholm, Sweden, 18 - 24 Jul 2013, pp.093
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The development of the Front-End Boards for the small-strip Thin Gap Chambers detector system of the ATLAS Muon New Small Wheel upgrade
/ Miao, P (CUST, SKLPDE) ; Li, F (CUST, SKLPDE) ; Guan, L (Michigan U.) ; Ravinovich, I (Weizmann Inst.) ; Zhou, S (CUST, SKLPDE) ; Zhang, N J (CUST, SKLPDE) ; Zhang, Z L (CUST, SKLPDE) ; Wang, X X (CUST, SKLPDE) ; Jin, G (CUST, SKLPDE)
The ATLAS experiment at CERN is scheduled to replace the innermost station of its Muon Spectrometer in the forward region during its Phase-I upgrade in order to enhance the capabilities on triggering and tracking of high transverse momentum muons towards high luminosity LHC runs. The New Small Wheel (NSW), a completely new detector system to be built, is composed of two novel gaseous detectors: Micro-mesh Gaseous Structure (Micromegas) and the small-strip Thin Gap Chamber (sTGC). [...]
2020 - 26 p.
- Published in : JINST 15 (2020) P11024
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Cosmic test of sTGC detector prototype made in China for ATLAS experiment upgrade
/ Zhao, Xiao (Shandong U.) ; Zhang, Dengfeng (Shandong U.) ; Li, Wenlong (Shandong U.) ; Li, Changyu (Shandong U.) ; Zhu, Chengguang (Shandong U.) ; Li, Han (Shandong U.) ; Liu, Shengquan (Hefei, CUST) ; Miao, Peng (Hefei, CUST) ; Du, Yanyan (Yantai U.) ; Duan, Yanyun (Shandong U.)
Following the Higgs particle discovery, the Large Hadron Collider complex will be upgraded in several phases allowing the luminosity to increase to $7 \times 10^{34}cm^{-2}s^{-1}$. In order to adapt the ATLAS detector to the higher luminosity environment after the upgrade, part of the ATLAS muon end-cap system, the Small Wheel, will be replaced by the New Small Wheel. [...]
arXiv:1808.08821.-
2019-05-21 - 5 p.
- Published in : Nucl. Instrum. Methods Phys. Res., A 927 (2019) 257-261
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Construction of a sTGC Prototype for the ATLAS-MUON Upgrade
/ Guan, Liang (University of Science and Technology of China) ; Mikenberg, Giora (Department of Particle Physics, The Weizmann Institute of Science) ; Zhu, Junjie (University of Michigan, Department of Physics) ; Smakhtin, Vladimir (Department of Particle Physics, The Weizmann Institute of Science) ; Shoa, Meir (Department of Particle Physics, The Weizmann Institute of Science)
The innermost station (Small Wheel) of the ATLAS muon spectrometer end-cap will be replaced with the New Small Wheel (NSW) to profit from the high luminosity runs of LHC after phase I upgrade . sTGC will be the primary trigger detectors proving Level-1 trigger as well as complementing the precision muon tracking. [...]
ATL-MUON-SLIDE-2014-774.-
Geneva : CERN, 2014 - 1 p.
Fulltext: PDF; External link: Original Communication (restricted to ATLAS)
In : Conference Information and Promotion Committee (CIP) for the IEEE – Nuclear Science Symposium and Medical Imaging Conference, and Room-Temperature Semiconductor X-Ray and Gamma-Ray Detectors workshop (IEEE NSS-MIC), Seattle, WA, USA, 8 - 15 Nov 2014
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