Started few years ago, the goal of this R&D; project is to develop a new generation of single amplification stage resistive MPGD based on Micromegas technology with the following characteristics: stable and efficient operation up to 10 MHz/cm$^{2}$ particle flows; high granularity readout with small pads of the order of mm$^{2}$; reliable and cost-effective production process. The miniaturization of the readout elements and the optimization of the spark protection system, as well as the stability and robustness under operation, are the primary challenges of the project. Several Micromegas detectors have been built with similar anode planes, segmented with a matrix of 48 × 16 readout pads with a rectangular shape (0.8 × 2.8 mm$^{2}$) and wit...
We present here the development of resistive Micromegas with O(mm 2 ) pad readout aiming at improvin...
Resistive Micromegas detectors have proved to be suitable for precision tracking in dense particle r...
Resistive Micromegas are nowadays a mature technology for High Energy Physics experiments. In the A...
Started few years ago, the goal of this R&D project is to develop a new generation of single amplifi...
We present the development of resistive Micromegas aiming at operation under high rates, up to tens ...
We present the development of resistive Micromegas aiming at operation under high rates, up to tens ...
We present the development of resistive Micromegas with small pad readout aiming at precision tracki...
We present the development of resistive micromegas aiming at precision tracking in high rate environ...
An R&D; project has been recently started to consolidate the technology of resistive Micromegas for ...
Motivated mainly by future detector upgrades at HL-LHC and at future colliders, most of the HEP R&D ...
One of the main objectives within the community of the Micro-Pattern-Gaseous-Detectors (MPGD) is the...
Detectors at future accelerators will require operation at rates up to three orders of magnitude hig...
Motivated mainly by future upgrades at high-luminosity LHC (HL-LHC) and detectors at future accelera...
International audienceA novel type of resistive Micromegas combining a Bulk mesh and a resistive pad...
We present here the development of resistive Micromegas with O(mm 2 ) pad readout aiming at improvin...
Resistive Micromegas detectors have proved to be suitable for precision tracking in dense particle r...
Resistive Micromegas are nowadays a mature technology for High Energy Physics experiments. In the A...
Started few years ago, the goal of this R&D project is to develop a new generation of single amplifi...
We present the development of resistive Micromegas aiming at operation under high rates, up to tens ...
We present the development of resistive Micromegas aiming at operation under high rates, up to tens ...
We present the development of resistive Micromegas with small pad readout aiming at precision tracki...
We present the development of resistive micromegas aiming at precision tracking in high rate environ...
An R&D; project has been recently started to consolidate the technology of resistive Micromegas for ...
Motivated mainly by future detector upgrades at HL-LHC and at future colliders, most of the HEP R&D ...
One of the main objectives within the community of the Micro-Pattern-Gaseous-Detectors (MPGD) is the...
Detectors at future accelerators will require operation at rates up to three orders of magnitude hig...
Motivated mainly by future upgrades at high-luminosity LHC (HL-LHC) and detectors at future accelera...
International audienceA novel type of resistive Micromegas combining a Bulk mesh and a resistive pad...
We present here the development of resistive Micromegas with O(mm 2 ) pad readout aiming at improvin...
Resistive Micromegas detectors have proved to be suitable for precision tracking in dense particle r...
Resistive Micromegas are nowadays a mature technology for High Energy Physics experiments. In the A...