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CERN Document Server 20 record trovati  1 - 10successivo  salta al record: La ricerca ha impiegato 0.56 secondi. 
1.
Towards MPGDs with embedded pixel ASICs / Scharenberg, L. (CERN) ; Alozy, J. (CERN) ; Billereau, W. (CERN) ; Brunbauer, F. (CERN) ; Campbell, M. (CERN) ; Carbonez, P. (CERN) ; Flöthner, K.J. (CERN ; Bonn U., HISKP) ; Garcia, F. (Helsinki Inst. of Phys.) ; Garcia-Tejedor, A. (CERN ; SUBATECH, Nantes) ; Genetay, T. (CERN ; SUBATECH, Nantes) et al.
Combining gaseous detectors with a high-granularity pixelated charge readout enables experimental applications which otherwise could not be achieved. [...]
arXiv:2412.16950.
- 6.
Fulltext
2.
Performance of a triple-GEM detector with capacitive-sharing 3-coordinate (X–Y–U)-strip anode readout / Gnanvo, Kondo (Jefferson Lab) ; Lee, Seung Joon (Jefferson Lab) ; Mehl, Bertrand (CERN) ; de Oliveira, Rui (CERN) ; Weisenberger, Andrew (Jefferson Lab)
The concept of capacitive-sharing readout, described in detail in a previous study, offers the possibility for the development of high-performance three-coordinates (X-Y-U)-strip readout for Micro Pattern Gaseous Detectors (MPGDs) using simple standard PCB fabrication techniques. Capacitive-sharing (X-Y-U)-strip readout allows simultaneous measurement of the Cartesian coordinates x and y of the position of the particles together with a third coordinate u along the diagonal axis in a single readout PCB. [...]
arXiv:2407.20097.- 2024-07-29 - Published in : Nucl. Instrum. Methods Phys. Res., A 1066 (2024) 169654 Fulltext: PDF;
3.
Annual Report 2023 and Phase-I Closeout / Aglieri Rinella, Gianluca
This report summarises the activities of the CERN strategic R&D programme on technologies for future experiments during the year 2023, and highlights the achievements of the programme during its first phase 2020-2023..
CERN-EP-RDET-2024-001 - 208.

4.
Characterisation of resistive MPGDs with 2D readout / Scharenberg, L. (CERN) ; Brunbauer, F. (CERN) ; Danielsson, H. (CERN) ; Fang, Z. (CUST, SKLPDE ; Hefei, CUST) ; Flöthner, K.J. (CERN ; Bonn U., HISKP) ; Garcia, F. (Helsinki Inst. of Phys.) ; Janssens, D. (CERN ; Brussels U., IIHE ; Vrije U., Brussels) ; Lisowska, M. (CERN ; U. Paris-Saclay) ; Liu, J. (CUST, SKLPDE ; Hefei, CUST) ; Lyu, Y. (CUST, SKLPDE ; Hefei, CUST) et al.
Micro-Pattern Gaseous Detectors (MPGDs) with resistive anode planes provide intrinsic discharge robustness while maintaining good spatial and time resolutions. Typically read out with 1D strips or pad structures, here the characterisation results of resistive anode plane MPGDs with 2D strip readout are presented. [...]
arXiv:2402.03899.- 2024-05-21 - 13 p. - Published in : JINST 19 (2024) P05053 Fulltext: document - PDF; 2402.03899 - PDF;
5.
Time Projection Chamber for GADGET II / Mahajan, Ruchi (Michigan State U., East Lansing (main)) ; Wheeler, T. (Michigan State U., East Lansing (main) ; Michigan State U.) ; Pollacco, E. (IRFU, Saclay) ; Wrede, C. (Michigan State U. ; Michigan State U., East Lansing (main)) ; Adams, A. (Michigan State U., East Lansing (main) ; Michigan State U.) ; Alvarez-Pol, H. (Santiago de Compostela U., IGFAE) ; Andalib, A. (Michigan State U., East Lansing (main)) ; Anthony, A. (High Point U.) ; Ayyad, Y. (Santiago de Compostela U., IGFAE) ; Bazin, D. (Michigan State U., East Lansing (main) ; Michigan State U.) et al.
Background: The established GADGET detection system, designed for measuring weak, low-energy $\beta$-delayed proton decays, features a gaseous Proton Detector with MICROMEGAS readout for calorimetric particle detection, surrounded by a Segmented Germanium Array for high-resolution prompt $\gamma$-ray detection. Purpose: To upgrade GADGET's Proton Detector to operate as a compact Time Projection Chamber (TPC) for the detection, 3D imaging and identification of low-energy $\beta$-delayed single- and multi-particle emissions mainly of interest to astrophysical studies. [...]
arXiv:2401.01904.- 2024-09-12 - 13 p. - Published in : Phys. Rev. C 110 (2024) 035807 Fulltext: PDF;
6.
Characterization of Charge Spreading and Gain of Encapsulated Resistive Micromegas Detectors for the Upgrade of the T2K Near Detector Time Projection Chambers / Ambrosi, L. (Padua U., Astron. Dept. ; INFN, Padua) ; Attié, D. (IRFU, Saclay) ; Ballester, O. (Barcelona, IFAE) ; Batkiewicz-Kwasniak, M. (Cracow, INP) ; Billoir, P. (Paris U., VI-VII) ; Blanchet, A. (Paris U., VI-VII) ; Blondel, A. (Paris U., VI-VII) ; Bolognesi, S. (IRFU, Saclay) ; Boullon, R. (IRFU, Saclay) ; Calvet, D. (IRFU, Saclay) et al.
An upgrade of the near detector of the T2K long baseline neutrino oscillation experiment is currently being conducted. This upgrade will include two new Time Projection Chambers, each equipped with 16 charge readout resistive Micromegas modules. [...]
arXiv:2303.04481.- 2023-08-06 - 40 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1056 (2023) 168534 Fulltext: PDF;
7.
Annual Report 2022 / Aglieri, Gianluca
This report summarises the activities and main achievements of the CERN strategic R&D programme on technologies for future experiments during the year 2022
CERN-EP-RDET-2023-002 - 100.

8.
Extension of the R&D Programme on Technologies for Future Experiments / Joram, Christian
we have conceived an extension of the R&D programme covering the period 2024 to 2028, i.e [...]
CERN-EP-RDET-2023-001 -

9.
Performance of a resistive micro-well detector with capacitive-sharing strip anode readout / Gnanvo, Kondo (Virginia U.) ; Liyanage, Nilanga (Virginia U.) ; Mehl, Bertrand (CERN) ; de Oliveira, Rui (CERN)
The present study is carried out to demonstrate a new type of high-performance readout structure with low readout channel count developed for large-area micro pattern gaseous detectors. The structure exploits capacitive coupling between a vertical stack of 5μm thick copper pad layers sandwiched between 50μm thick polyimide foils to simultaneously transfer and spread the avalanche charges from the gaseous detector’s amplification structure to several strips or pads in the anode readout plane. [...]
2023 - 16 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1047 (2023) 167782
10.
The MAPS foil / Beolé, S. (INFN, Turin ; Turin U.) ; Carnesecchi, F. (CERN) ; Contin, G. (INFN, Turin ; Turin U.) ; de Oliveira, R. (CERN) ; di Mauro, A. (CERN) ; Ferry, S. (CERN) ; Hillemanns, H. (CERN) ; Junique, A. (CERN) ; Kluge, A. (CERN) ; Lautner, L. (CERN ; Munich, Tech. U.) et al.
We present a method of embedding a Monolithic Active Pixel Sensor (MAPS) into a flexible printed circuit board (FPC) and its interconnection by means of through-hole copper plating. The resulting assembly, baptised "MAPS foil", is a flexible, light, protected, and fully integrated detector module. [...]
arXiv:2205.12669.- 2022-10-27 - 4 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1046 (2023) 167673 Fulltext: Publication - PDF; 2205.12669 - PDF;

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