H. Postema
CERN
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Featured researches published by H. Postema.
nuclear science symposium and medical imaging conference | 2010
D. Abbaneo; S. Bally; H. Postema; A. Conde Garcia; J. P. Chatelain; G. Faber; L. Ropelewski; E. David; S. Duarte Pinto; G. Croci; M. Alfonsi; M. Van Stenis; Archana Sharma; L. Benussi; S. Bianco; S. Colafranceschi; D. Piccolo; G. Saviano; N. Turini; E. Oliveri; G. Magazzù; A. Marinov; M. Tytgat; N. Zaganidis; M. Hohlmann; Kondo Gnanvo; Y. Ban; H. Teng; J. Cai
The muon detection system of the Compact Muon Solenoid experiment at the CERN Large Hadron Collider is based on different technologies for muon tracking and triggering. In particular, the muon system in the endcap disks of the detector consists of Resistive Plate Chambers for triggering and Cathode Strip Chambers for tracking. At present, the endcap muon system is only partially instrumented with the very forward detector region remaining uncovered. In view of a possible future extension of the muon endcap system, we report on a feasibility study on the use of Micro-Pattern Gas Detectors, in particular Gas Electron Multipliers, for both muon triggering and tracking. Results on the construction and characterization of small triple-Gas Electron Multiplier prototype detectors are presented.
ieee nuclear science symposium | 2011
M. Tytgat; A. Marinov; N. Zaganidis; Y. Ban; J. Cai; H. Teng; A. Mohapatra; T. Moulik; M. Abbrescia; Anna Colaleo; G. De Robertis; F. Loddo; Marcello Maggi; S. Nuzzo; S. A. Tupputi; L. Benussi; S. Bianco; S. Colafranceschi; D. Piccolo; G. Raffone; G. Saviano; M. G. Bagliesi; R. Cecchi; G. Magazzu; E. Oliveri; N. Turini; T. Fruboes; D. Abbaneo; C. Armagnaud; P. Aspell
At present, part of the forward RPC muon system of the CMS detector at the CERN LHC remains uninstrumented in the high-η region. An international collaboration is investigating the possibility of covering the 1.6 < |η| < 2.4 region of the muon endcaps with large-area triple-GEM detectors. Given their good spatial resolution, high rate capability, and radiation hardness, these micro-pattern gas detectors are an appealing option for simultaneously enhancing muon tracking and triggering capabilities in a future upgrade of the CMS detector. A general overview of this feasibility study will be presented. The design and construction of small (10×10 cm2) and full-size trapezoidal (1 × 0.5 m2) triple-GEM prototypes will be described. During detector assembly, different techniques for stretching the GEM foils were tested. Results from measurements with x-rays and from test beam campaigns at the CERN SPS will be shown for the small and large prototypes. Preliminary simulation studies on the expected muon reconstruction and trigger performances of this proposed upgraded muon system will be reported.
Journal of Instrumentation | 2013
D. Abbaneo; M. Abbrescia; M. Abi Akl; C Armaingaud; P. Aspell; Y. Assran; S. Bally; Y. Ban; P. Barria; L. Benussi; V. Bhopatkar; S. Bianco; Jelte E. Bos; O. Bouhali; J. Cai; Cesare Calabria; A. Castaneda; S. Cauwenbergh; Ali Celik; J. Christiansen; S. Colafranceschi; Anna Colaleo; A. Conde Garcia; G. De Lentdecker; R. De Oliveira; G. De Robertis; S. Dildick; S. Ferry; W. Flanagan; J. Gilmore
The CMS GEM collaboration is performing a feasibility study to install triple-GEM detectors in the forward region of the muon system (1.6 < vertical bar eta vertical bar < 2.4) of the CMS detector at the LHC. Such micro-pattern gas detectors are able to cope with the extreme particle rates that are expected in that region during the High Luminosity phase of the LHC. With their spatial resolution of order 100 micron GEMs would not only provide additional benefits in the CMS muon High Level Trigger, but also in the muon identification and track reconstruction, effectively combining tracking and triggering capabilities in one single device. The present status of the full project will be reviewed, highlighting all importants steps and achievements since the start of the R& D in 2009. Several small and full-size prototypes were constructed with different geometries and techniques. The baseline design of the triple-GEM detector for CMS will be described, along with the results from extensive test measurements of all prototypes both in the lab and in test beams at the CERN SPS. The proposed on-and off-detector electronics for the final system will be presented.
Journal of Instrumentation | 2012
D. Abbaneo; M. Abbrescia; M. Alfonsi; C Armaingaud; P. Aspell; M. G. Bagliesi; Y. Ban; S. Bally; L. Benussi; U. Berzano; S. Bianco; Jelte E. Bos; K. Bunkowski; J. Cai; R. Cecchi; J. P. Chatelain; J. Christiansen; S. Colafranceschi; Anna Colaleo; A. Conde Garcia; G. Croci; E. David; G. De Robertis; R. De Oliveira; S. Dildick; S. Duarte Pinto; S. Ferry; F. Formenti; L. Franconi; T. Fruboes
GEM detectors are used in high energy physics experiments given their good spatial resolution, high rate capability and radiation hardness. An international collaboration is investigating the possibility of covering the 1.6 < |?| < 2.4 region of the CMS muon endcaps with large-area triple-GEM detectors. The CMS high-? area is actually not fully instrumented, only Cathode Strip Chamber (CSC) are installed. The vacant area presents an opportunity for a detector technology able to to cope with the harsh radiation environment; these micropattern gas detectors are an appealing option to simultaneously enhance muon tracking and triggering capabilities in a future upgrade of the CMS detector. A general overview of this feasibility study is presented. Design and construction of small (10cm ? 10cm) and full-size trapezoidal (1m ? 0.5m) triple-GEM prototypes is described. Results from measurements with x-rays and from test beam campaigns at the CERN SPS is shown for the small and large prototypes. Preliminary simulation studies on the expected muon reconstruction and trigger performances of this proposed upgraded muon system are reported.
Journal of Instrumentation | 2013
D. Abbaneo; M. Abbrescia; M. Abi Akl; C Argamaingaud; P. Aspell; Y. Assran; S. Bally; Y. Ban; P. Barria; L. Benussi; V. Bhopatkar; S. Bianco; Jelte E. Bos; O. Bouhali; J. Cai; C. Calabria; A. Castaneda; S. Cauwenbergh; A. Celik; J. Christiansen; S. Colafranceschi; Anna Colaleo; A. Conde Garcia; G. De Lentdecker; R. De Oliveira; G. De Robertis; S. Dildick; S. Ferry; W. Flanagan; J. Gilmore
The international CMS GEM collaboration is studying the feasibility of upgrading the CMS forward muon system by adding layers of triple GEM based detectors. After successful tests of small size tripe-GEM chambers in the period of 2010-2011, the collaboration has designed, built and tested full-size GEM chambers for the upgrade purpose. We report on results from test beam and simulation that were conducted to study the performance of the GEM chambers.
ieee nuclear science symposium | 2011
D. Abbaneo; M. Abbrescia; C. Armagnaud; P. Aspell; M. G. Bagliesi; Y. Ban; S. Bally; L. Benussi; U. Berzano; S. Bianco; Jelte E. Bos; K. Bunkowski; J. Cai; R. Cecchi; J. P. Chatelain; J. Christiansen; S. Colafranceschi; Anna Colaleo; A. Conde Garcia; E. David; G. De Robertis; R. De Oliveira; S. Duarte Pinto; S. Ferry; F. Formenti; L. Franconi; Kondo Gnanvo; A. Gutierrez; M. Hohlmann; P. E. Karchin
Gas Electron Multipliers (GEM) are an interesting technology under consideration for the future upgrade of the forward region of the CMS muon system, specifically in the 1.6 < ∣η∣ < 2:4 endcap region. With a sufficiently fine segmentation GEMs can provide precision tracking as well as fast trigger information. The main objective is to contribute to the improvement of the CMS muon trigger. The construction of large-area GEM detectors is challenging both from the technological and production aspects. In view of the CMS upgrade we have designed and built the largest full-size Triple-GEM muon detector, which is able to meet the stringent requirements given the hostile environment at the high-luminosity LHC. Measurements were performed during several test beam campaigns at the CERN SPS in 2010 and 2011. The main issues under study are efficiency, spatial resolution and timing performance with different inter-electrode gap configurations and gas mixtures. In this paper results of the performance of the prototypes at the beam tests will be discussed.
nuclear science symposium and medical imaging conference | 2010
D. Abbaneo; S. Bally; H. Postema; A. Conde Garcia; J. P. Chatelain; G. Faber; L. Ropelewski; S. Duarte Pinto; G. Croci; M. Alfonsi; M. Van Stenis; Archana Sharma; L. Benussi; S. Bianco; S. Colafranceschi; F. Fabbri; L. Passamonti; D. Piccolo; D. Pierluigi; G. Saviano; A. Marinov; M. Tytgat; N. Zaganidis; N. Turini; E. Oliveri; G. Magazzù; Y. Ban; H. Teng; J. Cai; A. Russo
One of the main issues regarding a gaseous detector is the gas flow inside the detector itself. A bad gas flow can affect irreversibly the chamber performance. On the other hand optimizing gas circulation inside the detector could allow a safe and reliable operation even with less gas consumption while at the same time maintaining high performance. Simulations and comparison between several different configurations are presented and discussed.