Gas R&D on gas recirculation and recuperation for the Resistive Plate Chamber detectors
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[1] R. Guida,et al. R&D strategies for optimizing greenhouse gases usage in the LHC particle detection systems , 2020 .
[2] R. Guida,et al. Performance studies of RPC detectors with new environmentally friendly gas mixtures in presence of LHC-like radiation background , 2020, Journal of Instrumentation.
[3] R. Guida,et al. Gas recirculation and recuperation systems for Resistive Plate Chamber operation with new environmental friendly gases , 2019, Journal of Instrumentation.
[4] R. Guida,et al. Gas mixture quality monitoring for the RPC detectors at the LHC experiments , 2019, Journal of Instrumentation.
[5] R. Guida,et al. Gas Systems for Particle Detectors at the LHC Experiments: Overview and Perspectives , 2017 .
[6] G. Aielli,et al. Further gas mixtures with low environment impact , 2016 .
[7] R. Guida,et al. Characterization of RPC operation with new environmental friendly mixtures for LHC application and beyond , 2016 .
[8] A. Paoloni,et al. Gas mixture studies for streamer operated Resistive Plate Chambers , 2016 .
[9] M. Tytgat,et al. Preliminary results of Resistive Plate Chambers operated with eco-friendly gas mixtures for application in the CMS experiment , 2016, 1605.08172.
[10] M. Capeans,et al. Strategies for reducing the environmental impact of gaseous detector operation at the CERN-LHC experiments , 2015, 2015 IEEE Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC).
[11] S. Haider,et al. RPC performances and gas quality in a closed loop gas system for the new purifiers configuration at LHC experiments , 2013 .
[12] S. Haider,et al. Validation of the new filters configuration for the RPC gas systems at LHC experiments , 2012 .
[13] R. Cardarelli,et al. Development of resistive plate counters , 1981 .
[14] S. Haider,et al. Optimization of a closed-loop gas system for the operation of Resistive Plate Chambers at the Large Hadron Collider experiments , 2012 .