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Related papers: Piggyback resistive Micromegas

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Resistive strips Micromegas are employed in the ATLAS New Small Wheel project. They have been already installed and operate in the experimental cavern of the ATLAS experiment at CERN. This work attempts to describe the mechanism of the…

Instrumentation and Detectors · Physics 2024-11-28 Theodoros Alexopoulos , Stavros Maltezos , Konstantinos Patrinos , George Iakovidis , George Koutelieris

The Tile Calorimeter at ATLAS is a hadron calorimeter based on steel plates and scintillating tiles read out by PMTs. The current read-out system uses standard ADCs and custom ASICs to digitize and temporarily store the data on the…

Instrumentation and Detectors · Physics 2015-10-28 Henrik Åkerstedt , Steffen Muschter , Gary Drake , Kelby Anderson , Christian Bohm , Mark Oreglia , Fukun Tang

A metallic ring based, diode-integrated, low-profile, power-dependent, reflective metasurface working from 3 GHz to 3.6 GHz is proposed in this letter. Unlike the previous study which shifts a band up and down to change the impedance of the…

Applied Physics · Physics 2022-06-15 Xiaozhen Yang , Erda Wen , Daniel F. Sievenpiper

The novel MPGD-based photon detectors of COMPASS RICH-1 consist of large-size hybrid MPGDs with multi-layer architecture including two layers of Thick-GEMs and a bulk resistive MicroMegas. The top surface of the first THGEM is coated with a…

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…

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 PICOSEC Micromegas detector is a precise-timing gaseous detector that combines a Cherenkov radiator, a semi-transparent photocathode and a Micromegas amplification stage, targeting time resolutions of tens of picoseconds for minimum…

In this paper, the design and the performance of a prototype detector based on MicroMegas technology with two detection planes in a common gas volume is discussed. The detector is suited for the forward region of LHC detectors, addressing…

Instrumentation and Detectors · Physics 2017-06-28 Bernard Brickwedde , Andreas Düdder , Matthias Schott , Eda Yildirim

The readout chip for the CMS pixel detector has to deal with an enormous data rate. On-chip zero suppression is inevitable and hit data must be buffered locally during the latency of the first level trigger. Dead-time must be kept at a…

Instrumentation and Detectors · Physics 2009-11-11 H. Chr. Kaestli , M. Barbero , W. Erdmann , Ch. Hoermann , R. Horisberger , D. Kotlinski , B. Meier

The PICOSEC detection concept consists in a "two-stage" Micromegas detector coupled to a Cherenkov radiator and equipped with a photocathode. A proof of concept has already been tested: a single-photoelectron response of 76 ps has been…

Radio frequency identification (RFID) is a mature technology, which allows performing contactless data readout via wireless communication links. While communication protocols in this field are subject to regulations, there is a room of…

A two-dimensional position-sensitive microchannel plate detector, with a {\O}100 mm sensitive area and equipped with four integrated amplifiers, is realized with a new anode scheme. The anode is constructed by two independent…

Instrumentation and Detectors · Physics 2018-08-01 Yuezhao Zhang , Deyang Yu , Junliang Liu , Liping Yang , Wei Wang , Xiaoxiao Li , Xiaona Zhu , Xiaoxun Song , Xinfei Hui , Wei Xi , Xin Li , Huiping Liu , Xiaohong Cai

The spherical proportional counter is a gaseous detector used in a variety of applications, including direct dark matter and neutrino-less double beta decay searches. The ACHINOS multianode structure is a read-out technology that overcomes…

Instrumentation and Detectors · Physics 2020-11-26 I. Giomataris , M. Gros , I. Katsioulas , P. Knights , J. -P. Mols , T. Neep , K. Nikolopoulos , G. Savvidis , I. Savvidis , L. Shang , R. Ward , Y. Zhou

This paper presents a first study of the performance of a novel 2D position-sensitive microstrip detector, where the resistive charge division method was implemented by replacing the metallic electrodes with resistive electrodes made of…

Instrumentation and Detectors · Physics 2015-05-28 D. Bassignana , M. Fernandez , R. Jaramillo , M. Lozano , F. J. Munoz , G. Pellegrini , D. Quirion , I. Vila

The PICOSEC Micromegas detector is a~precise-timing gaseous detector based on a~Cherenkov radiator coupled with a~semi-transparent photocathode and a~Micromegas amplifying structure, targeting a~time resolution of tens of picoseconds for…

This article presents a detector system consisting of three components, a CMOS imaging array, a gaseous-detector structure with a Micromegas layout and a UV-photon sensitive CsI reflective photocathode. All three elements have been…

We demonstrate an amplitude-based micro-displacement sensor that uses a plastic photonic bandgap Bragg fiber with one end coated with a silver layer. The reflection intensity of the Bragg fiber is characterized in response to different…

Optics · Physics 2013-04-17 H. Qu , T. Brastaviceanu , F. Bergeron , J. Olesik , M. Skorobogatiy

We have developped a model to simulate the behavior of a resistive micromegas (MICROMEsh GAseous Structure) detector to a discharge using an electronic software (Virtuoso).

Instrumentation and Detectors · Physics 2013-04-05 J. Samarati

The gaseous Micromegas detector designed for the CERN Axion search experiment CAST, operated smoothly during Phase-I, which included the 2003 and 2004 running periods. It exhibited linear response in the energy range of interest (1-10keV),…

Instrumentation and Detectors · Physics 2008-11-26 S. Aune , T. Dafni , G. Fanourakis , E. Ferrer Ribas , T. Geralis , A. Giganon , Y. Giomataris , I. G. Irastorza , K. Kousouris , K. Zachariadou
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