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Micromegas technology is a promising candidate to replace Atlas forward muon chambers -tracking and trigger- for future HL-LHC upgrade of the experiment. The increase on background and pile-up event probability requires detector…

We report on the design and performance of a spark-resistant bulk-micromegas chamber. The principle of this design lends itself to the construction of large-area muon chambers for the upgrade of the detectors at the Large Hadron Collider at…

Instrumentation and Detectors · Physics 2010-11-25 J. Burnens , R. de Oliveira , G. Glonti , O. Pizzirusso , V. Polychronakos , G. Sekhniaidze , J. Wotschack

New Micromegas (Micro-mesh gaseous detectors) are being developed in view of the future physics projects planned by the COMPASS collaboration at CERN. Several major upgrades compared to present detectors are being studied: detectors…

We present an original design for large area gaseous detectors based on the MICROMEGAS technology. This technology incorporates an insulating grid, sandwiched between the micro-mesh and the anode-pad plane, which provides an uniform 200…

Instrumentation and Detectors · Physics 2016-08-16 D. Bernard , H. Delagrange , D. G. d'Enterria , M. Le Guay , G. Martínez , M. J. Mora , P. Pichot , D. Roy , Y. Schutz , A. Gandi , R. de Oliveira

Micro-pattern gaseous detectors (MPGDs) are a promising readout technology for hadronic calorimeters (HCAL) thanks to their good space resolution, longevity and rate capability. We describe the development of a HCAL based on MPGDs for an…

The construction of a micro-pattern gas detector of dimensions 40x10 cm**2 is described. Two gas electron multiplier foils (GEM) provide the internal amplification stages. A two-layer readout structure was used, manufactured in the same…

Background: we develop the concept of a Micromegas (MICRO-MEsh GAseous Structure) readout plane with an additional GEM (Gas Electron Multiplier) preamplification stage placed a few mm above it, to increase the maximum effective gain of the…

A sealed high gas pressure detector working in pure argon is assembled. It consists of a 5 cm $\times$ 5 cm PCB THGEM (THick Gaseous Electron Multipliers). The detector structure and experimental setup are described. The performances under…

Instrumentation and Detectors · Physics 2016-12-26 Yu-Ning Zhang , Qian Liu , Hong-Bang Liu , Yi-Gang Xie , Xiao-Rui Lyu , Shi Chen , Wen-Qian Huang , Dao-Jin Hong , Yang-Heng Zheng

We report the design, construction, and initial commissioning results of a large high pressure gaseous Time Projection Chamber (TPC) with Micromegas modules for charge readout. The detector vessel has an inner volume of about 600 L and an…

Gas pressure sensors based on nanomechanical membranes have recently demonstrated an ultra-wide ten-decade measurement range, a gas-type-independent response, and a self-calibrating operation with uncertainties of approximately $1\,\%$. The…

Recent developments of the AC-calorimetric technique adapted for the needs of high pressure experiments are discussed. A semi-quantitative measurement of the specific heat with a Bridgman-type of pressure cell as well as a diamond anvil…

Strongly Correlated Electrons · Physics 2015-06-24 Heribert Wilhelm

Time Projection Chambers (TPCs) operated at high pressure have become a topic of interest for future long baseline neutrino experiments. Pressurized gas retains the low momentum threshold for particle detection of atmospheric TPCs, but…

Instrumentation and Detectors · Physics 2021-09-01 Philip Hamacher-Baumann , Stefan Roth , Thomas Radermacher , Nick Thamm

Micromegas is one of the detector technologies (along with the small Thin Gap Chambers) that has been chosen for precision tracking and triggering purposes of the ATLAS muon forward detectors in the view of LHC luminosity increase. To…

Instrumentation and Detectors · Physics 2015-06-17 Georgios Iakovidis

The bulk Micromegas detector is considered to be a promising candidate for building TPCs for several future experiments including the projected linear collider. The standard bulk with a spacing of 128 micron has already established itself…

Instrumentation and Detectors · Physics 2016-05-11 Purba Bhattacharya , Sudeb Bhattacharya , Nayana Majumdar , Supratik Mukhopadhyay , Sandip Sarkar , Paul Colas , David Attie

In this paper, the design and the performance of two prototype detectors based on Micromegas technology with a pad readout geometry is discussed. In addition, two alternative implementations of a spark-resistent protection layer on top of…

Instrumentation and Detectors · Physics 2015-06-04 Tai-Hua Lin , Andreas Düdder , Matthias Schott , Chrysostomos Valderanis

Five small prototype micromegas detectors were positioned in the ATLAS detector during Large Hadron Collider running at $\sqrt{s} = 7$ and $8\, \mathrm{TeV}$. A $9\times 4.5\, \mathrm{cm^2}$ double drift gap detector was placed in front of…

Instrumentation and Detectors · Physics 2015-06-17 Y. Kataoka , S. Leontsinis , K. Ntekas

A new design of highly granular hadronic calorimeter using Glass Resistive Plate Chambers (GRPCs) with embedded electronics has been proposed for the future International Linear Collider (ILC) experiments. It features a 2-bit threshold…

The latest Micromesh Gas Amplification Structures (Micromegas) are achieving outstanding energy resolution for low energy photons, with values as low as 11% FWHM for the 5.9 keV line of $^{55}$Fe in argon/isobutane mixtures at atmospheric…

Instrumentation and Detectors · Physics 2015-05-13 T. Dafni , E. Ferrer-Ribas , I. Giomataris , Ph. Gorodetzky , F. Iguaz , I. G. Irastorza , P. Salin , A. Tomas