Systematic investigation of critical charge limits in Thick GEMs
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T. Waldmann | L. Fabbietti | P. Gasik | T. Klemenz | L. Lautner | B. Ulukutlu | A. Mathis | H. Fribert
[1] V. Ratza. Multi-stage Micropattern Gaseous Detectors for the ALICE TPC Upgrade - Studying and Modelling Charge Transfer and Energy Resolution , 2020 .
[2] M.Finger,et al. The hybrid MPGD-based photon detectors of COMPASS RICH-1 , 2018, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment.
[3] M.Finger,et al. The novel photon detectors based on MPGD technologies for the upgrade of COMPASS RICH-1 , 2018, 1804.05765.
[4] S. Bressler,et al. Measurements of charging-up processes in THGEM-based particle detectors , 2018, 1801.00533.
[5] S. Bressler,et al. Simulation of gain stability of THGEM gas-avalanche particle detectors , 2017, 1711.02073.
[6] O. Denisov,et al. AIDA-2020 Advanced European Infrastructures for Detectors at Accelerators Conference / Workshop Paper Novel MPGD based Detectors of Single Photons in COMPASS RICH-1 , 2017 .
[7] P. Gasik,et al. Charge density as a driving factor of discharge formation in GEM-based detectors , 2017, 1704.01329.
[8] E. Oliveri,et al. Effects of high charge densities in multi-GEM detectors , 2015, 2015 IEEE Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC).
[9] Marinko Kovačić,et al. A floating multi-channel picoammeter for micropattern gaseous detector current monitoring , 2015 .
[10] M. Finger,et al. The gain in Thick GEM multipliers and its time-evolution , 2015 .
[11] M. Finger,et al. Status and progress of the novel photon detectors based on THGEM and hybrid MPGD architectures , 2014 .
[12] S. Aune,et al. Origin and simulation of sparks in MPGD , 2012 .
[13] A. Giganon,et al. Discharge rate measurements for Micromegas detectors in the presence of a longitudinal magnetic field , 2011 .
[14] R. Alon,et al. The THGEM: A thick robust gaseous electron multiplier for radiation detectors , 2010 .
[15] H. Moutarde,et al. A Geant4-based study on the origin of the sparks in a Micromegas detector and estimate of the spark probability with hadron beams , 2010 .
[16] P. Fonte,et al. On the physics and technology of gaseous particle detectors , 2009, 0909.2681.
[17] R. Alon,et al. A concise review on THGEM detectors , 2008, 0807.2026.
[18] A. Breskin,et al. Thick GEM-like multipliers—a simple solution for large area UV-RICH detectors , 2005, physics/0502131.
[19] A. Breskin,et al. Thick GEM-like hole multipliers: properties and possible applications , 2004, physics/0404119.
[20] A. Dell'Acqua,et al. Geant4 - A simulation toolkit , 2003 .
[21] Leszek Ropelewski,et al. Discharge studies and prevention in the gas electron multiplier (GEM) , 2002 .
[22] I. Papadopoulos,et al. Performance of MICROMEGAS with preamplification at high intensity hadron beams , 2002 .
[23] J. M. Goff,et al. Micromegas as a large microstrip detector for the COMPASS experiment , 2001 .
[24] P. Fonte,et al. The study and optimization of new micropattern gaseous detectors for high rate applications , 2000, 2000 IEEE Nuclear Science Symposium. Conference Record (Cat. No.00CH37149).
[25] Leszek Ropelewski,et al. EUROPEAN LABORATORY FOR PARTICLE PHYSICS CERN-EP/99-48 12.04.1999 CHARGE AMPLIFICATION AND TRANSFER PROCESSES IN THE GAS ELECTRON MULTIPLIER , 2001 .
[26] G. De Lentdecker,et al. High rate behavior and discharge limits in micro-pattern detectors , 1999 .
[27] F. Sauli. GEM: A new concept for electron amplification in gas detectors , 1997 .
[28] J. M. Meek,et al. A Theory of Spark Discharge , 1940 .
[29] L. Loeb,et al. Fundamental Processes of Electrical Discharge in Gases , 1940, Nature.
[30] H. Raether. Die Entwicklung der Elektronenlawine in den Funkenkanal , 1939 .
[31] A. F. Kip,et al. Electrical Discharges in Air at Atmospheric Pressure The Nature of the Positive and Negative Point‐to‐Plane Coronas and the Mechanism of Spark Propagation , 1939 .