Dynamics of Hot QCD Matter 2024 -- New facilities and instrumentation

Fuente: arXiv
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Main Authors: Sarkar, Amal, Palni, Prabhakar, Das, Santosh K., Kalani, Jaideep, Tambve, Ganesh J., Datta, Saptarshi, Atreya, Saloni, Rana, Sachin, Mondal, Md Kaosor Ali, Angiras, Poojan, Vijay, Anusree, Dash, Ganapati, Behera, Prafulla Kumar, Samuel, Deepak, C, Theertha
Format: Preprint
Published: 2025
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author Sarkar, Amal
Palni, Prabhakar
Das, Santosh K.
Kalani, Jaideep
Tambve, Ganesh J.
Datta, Saptarshi
Atreya, Saloni
Rana, Sachin
Mondal, Md Kaosor Ali
Angiras, Poojan
Vijay, Anusree
Dash, Ganapati
Behera, Prafulla Kumar
Samuel, Deepak
C, Theertha
author_facet Sarkar, Amal
Palni, Prabhakar
Das, Santosh K.
Kalani, Jaideep
Tambve, Ganesh J.
Datta, Saptarshi
Atreya, Saloni
Rana, Sachin
Mondal, Md Kaosor Ali
Angiras, Poojan
Vijay, Anusree
Dash, Ganapati
Behera, Prafulla Kumar
Samuel, Deepak
C, Theertha
contents This part of the conference proceeding provides a detailed overview of cutting-edge advancements in detector technologies, focusing on their optimization, characterization, and applications in particle physics experiments. Building on the insights and developments presented at the Hot QCD Matter 2022 conference, this section of the Hot QCD Matter 2024 proceedings highlights significant advancements in detector technologies. The development of Low Gain Avalanche Diodes (LGADs) into Ultra-Fast Silicon Detectors is explored, demonstrating their potential for superior timing resolution in future high-energy experiments. Simulation studies of Micropattern Gaseous Detectors (MPGDs), including MICROMEGAS and Gas Electron Multiplier (GEM) detectors, provide insights into their performance under high-radiation environments using tools like ANSYS and GARFIELD$^{++}$. A novel GEM foil geometry is proposed for improved gain and durability. Characterization of semiconductor detectors, such as Monolithic MALTA pixel detectors and CMS prototype silicon sensors, is also presented, highlighting their radiation tolerance, imaging capabilities, and structural integrity. These studies underscore the critical role of silicon sensors in ensuring detector reliability and performance. Additionally, the J-PARC muon g-2/EDM experiment is reviewed, showcasing its precision measurements to test Standard Model predictions and explore potential physics beyond. By addressing the interplay between detector development, simulation, and characterization, this proceeding showcases a collective effort toward advancing detector technologies and their pivotal role in pushing the boundaries of modern particle physics.
format Preprint
id arxiv_https___arxiv_org_abs_2502_08187
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Dynamics of Hot QCD Matter 2024 -- New facilities and instrumentation
Sarkar, Amal
Palni, Prabhakar
Das, Santosh K.
Kalani, Jaideep
Tambve, Ganesh J.
Datta, Saptarshi
Atreya, Saloni
Rana, Sachin
Mondal, Md Kaosor Ali
Angiras, Poojan
Vijay, Anusree
Dash, Ganapati
Behera, Prafulla Kumar
Samuel, Deepak
C, Theertha
High Energy Physics - Experiment
This part of the conference proceeding provides a detailed overview of cutting-edge advancements in detector technologies, focusing on their optimization, characterization, and applications in particle physics experiments. Building on the insights and developments presented at the Hot QCD Matter 2022 conference, this section of the Hot QCD Matter 2024 proceedings highlights significant advancements in detector technologies. The development of Low Gain Avalanche Diodes (LGADs) into Ultra-Fast Silicon Detectors is explored, demonstrating their potential for superior timing resolution in future high-energy experiments. Simulation studies of Micropattern Gaseous Detectors (MPGDs), including MICROMEGAS and Gas Electron Multiplier (GEM) detectors, provide insights into their performance under high-radiation environments using tools like ANSYS and GARFIELD$^{++}$. A novel GEM foil geometry is proposed for improved gain and durability. Characterization of semiconductor detectors, such as Monolithic MALTA pixel detectors and CMS prototype silicon sensors, is also presented, highlighting their radiation tolerance, imaging capabilities, and structural integrity. These studies underscore the critical role of silicon sensors in ensuring detector reliability and performance. Additionally, the J-PARC muon g-2/EDM experiment is reviewed, showcasing its precision measurements to test Standard Model predictions and explore potential physics beyond. By addressing the interplay between detector development, simulation, and characterization, this proceeding showcases a collective effort toward advancing detector technologies and their pivotal role in pushing the boundaries of modern particle physics.
title Dynamics of Hot QCD Matter 2024 -- New facilities and instrumentation
topic High Energy Physics - Experiment
url https://arxiv.org/abs/2502.08187