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Related papers: GEM Operation in Negative Ion Drift Gas Mixtures

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We study the performance of Gas Electron Multipliers (GEMs) in gaseous He, Ne and Ne+H2 at temperatures in the range of 2.6-293 K. In He, at temperatures between 62 and 293 K, the triple-GEM structures often operate at rather high gains,…

Instrumentation and Detectors · Physics 2009-11-11 A. Buzulutskov , J. Dodd , R. Galea , Y. Ju , M. Leltchouk , P. Rehak , V. Tcherniatine , W. J. Willis , A. Bondar , D. Pavlyuchenko , R. Snopkov , Y. Tikhonov

The Negative Ion Drift (NID) gas SF$_6$ has favourable properties for track reconstruction in directional Dark Matter (DM) searches utilising low pressure gaseous Time Projection Chambers (TPCs). However, the electronegative nature of the…

Instrumentation and Detectors · Physics 2023-11-20 A. G. McLean , N. J. C. Spooner , T. Crane , C. Eldridge , A. C. Ezeribe , R. R. Marcelo Gregorio , A. Scarff

The performance of Gas Electron Multipliers (GEMs) in gaseous He, Ne, He+H2 and Ne+H2 was studied at temperatures in the range of 3-293 K. This paper reports on previously published measurements and additional studies on the effects of the…

Instrumentation and Detectors · Physics 2009-11-11 R. Galea , J. Dodd , Y. Ju , M. Leltchouk , W. Willis , P. Rehak , V. Tcherniatine , A. Buzulutskov , D. Pavlyuchenko

We further study the performance of single, double and triple Gas Electron Multiplier (GEM) detectors in pure noble gases at high pressures, in the range of 1-10 atm. We confirm that light noble gases, in particular He and its mixtures with…

Instrumentation and Detectors · Physics 2015-06-26 V. Aulchenko , A. Bondar , A. Buzulutskov , L. Shekhtman , R. Snopkov , Yu. Tikhonov

Drift velocity and longitudinal diffusion measurements are reported for a Negative Ion TPC (NITPC) operating with Helium + carbon disulfide gas mixtures at total pressures from 160 to 700 torr. Longitudinal diffusion at the thermal-limit…

Instrumentation and Detectors · Physics 2009-11-10 C. J. Martoff , R. Ayad , M. Katz-Hyman , G. Bonvicini , A. Schreiner

A systematic study is performed to measure the ion backflow fraction of the GEM detectors. The effects of different voltage configurations and Ar/CO_2 gas mixtures, in ratios of 70:30, 80:20 and 90:10, on positive ion fraction are…

Instrumentation and Detectors · Physics 2021-08-18 A. Tripathy , P. K Sahu , S. Swain , S. Sahu

In gaseous tracking detectors with a large gaseous volume multiple layers of Gas Electron Multipliers (GEM) can be used to block positive ions from flowing back into the active volume, which is detrimental to the tracking performance. We…

Instrumentation and Detectors · Physics 2022-10-19 Sourav Tarafdar , Senta V. Greene , Julia Velkovska , Brandon Blankenship , Michael Z. Reynolds

We investigate the gas gain behaviour of a triple-GEM configuration in gas mixtures of argon, krypton and xenon with ten and thirty percent of carbon dioxide at pressures between 1 and 3 bar. Since the signal widths affect the dead time…

Instrumentation and Detectors · Physics 2007-05-23 A. Orthen , H. Wagner , H. J. Besch , S. Martoiu , R. H. Menk , A. H. Walenta , U. Werthenbach

We study the performance of the triple GEM (Gas Electron Multiplier) detector in pure noble gases He and Kr at high pressures, varying from 1 to 15 atm. The operation in these gases is compared to that recently studied in Ne, Ar and Xe. It…

Instrumentation and Detectors · Physics 2009-11-07 A. Bondar , A. Buzulutskov , L. Shekhtman , V. Snopkov , A. Vasiljev

Gas electron Multipliers (GEM) are a new generation of gaseous avalanche devices in the Micro Patterned Gaseous Detector category. GEMs are widely used in both nuclear and high energy experiments as well as in medical science. Several…

Instrumentation and Detectors · Physics 2022-12-21 Senta V. Greene , Julia Velkovska , Brandon Blankenship , Michael Z. Reynolds , Sourav Tarafdar

Low pressure gaseous Negative Ion Time Projection Chambers (NITPCs) have been used previously by the DRIFT experiment to search for a directional Dark Matter (DM) signature. The main challenge with using a Negative Ion Drift (NID) gas…

Instrumentation and Detectors · Physics 2026-02-16 A. G. McLean , S. Higashino , R. R. Marcelo Gregorio , K. Miuchi , N. J. C. Spooner

We have developed a new design of a GEM-like detector with single-layer electrodes made of a resistive kapton. This detector can operate at gains close to 10E5 even in pure Ar and Ne and if transited to discharges at higher gains they, due…

Plasma Physics · Physics 2008-11-26 R. Oliveira , V. Peskov , F. Pietropaolo , P. Picchi

We present results on THGEM operation at low gas pressures, in the range 0.5-50 Torr. Gaseous gain up to 100000 was recorded at 10 Torr of Isobutane in a single multiplier element, with pulses rise-time in the few ns range. Cascaded…

Instrumentation and Detectors · Physics 2019-08-15 C. K. Shalem , R. Chechik , A. Breskin , K. Michaeli , N. Ben-Haim

We study the performance of the triple-GEM (Gas Electron Multiplier) detector in pure noble gases Ne, Ar and Xe, at different pressures varying from 1 to 10 atm. In Ar and Xe, the maximum attainable gain of the detector abruptly drops down…

Instrumentation and Detectors · Physics 2009-11-07 A. Bondar , A. Buzulutskov , L. Shekhtman

We study the feedback of positive ions in triple and quadruple Gas Electron Multiplier (GEM) detectors. The effects of GEM hole diameter, detector gain, applied voltages, number of GEMs and other parameters on ion feedback are investigated…

Instrumentation and Detectors · Physics 2009-11-07 A. Bondar , A. Buzulutskov , L. Shekhtman , A. Vasiljev

The performance of triple-GEM detectors in He+N2 gas mixtures is studied in the range of 1-10 atm. The results obtained are relevant in the field of minimization of ionic space-charge effect in the TPC and neutron detection.

Instrumentation and Detectors · Physics 2007-05-23 A. Bondar , A. Buzulutskov , L. Shekhtman , A. Vasiljev

Gas Electron Multiplier (GEM) is one of the mostly used gaseous detectors in the High Energy Physics (HEP) experiments. GEMs are widely used as tracking devices due to their high-rate handling capability and good position resolution. An…

High Energy Physics - Experiment · Physics 2024-01-23 S. Mandal , S. Chatterjee , A. Sen , S. Gope , S. Dhani , A. C. Hegde , M. Chatterjee , S. Das , S. Biswas

The Gas Electron Multiplier (GEM) detectors are widely used in high-energy physics (HEP) experiments as tracking devices because of their excellent position resolution and to handle high particle rates capability. Charging-up effect is a…

Instrumentation and Detectors · Physics 2026-05-06 S. Mandal , S. Ghosh , S. Das , S. Biswas

We present a systematic investigation of the gain properties of a gas electron multiplier (GEM) foil in pure dimethyl ether (DME) at low pressures. The GEM is made from copper- clad liquid crystal polymer insulator (LCP-GEM) designed for…

Instrumentation and Detectors · Physics 2014-07-15 Y. Takeuchi , T. Tamagawa , T. Kitaguchi , S. Yamada , W. Iwakiri , F. Asami , A. Yoshikawa , K. Kaneko , T. Enoto , A. Hayato , T. Kohmura , the GEMS/XACT team

Gaseous detectors are used in both low energy and high energy physics experiments. The present day gaseous detectors, i.e., the Micro-Pattern gaseous detectors (MPGD) are more efficient and fast. Gas Electron multiplier (GEM) is quite well…

Instrumentation and Detectors · Physics 2017-08-08 Deb Sankar Bhattacharya , P K Sahu , Sagarika Swain , Sanjib K Sahu
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