The $\mu$-RWELL is a compact spark-protected single amplification stage Micro-Pattern-Gaseous-Detector (MPGD). The detector amplification stage is realized with a polyimide structure, micro-patterned with a dense matrix of blind-holes, integrated into the readout structure. The anode is formed by a thin Diamond Like Carbon (DLC) resistive layer separated by an insulating glue layer from the readout strips. The introduction of the resistive layer strongly suppressing the transition from streamer to spark gives the possibility to achieve large gains (> $10^{4}$), without significantly affecting the capability to be efficiently operated in high particle fluxes. In this work we present the results of a systematic study of the $\mu$-RWELL perfor...
One of the main objectives within the community of the Micro-Pattern-Gaseous-Detectors (MPGD) is the...
Started few years ago, the goal of this R&D; project is to develop a new generation of single amplif...
In this work we present a novel idea for a compact spark-protected single amplification stage Micro-...
The μ-RWELL is a single-amplification stage resistive Micro-Pattern Gaseous Detector (MPGD) . The de...
The μ-RWELL has been conceived as a compact, simple and robust Micro-Pattern-Gaseous-Detector (MPGD)...
The micro-Resistive WELL ($\mu $-RWELL) is a compact, simple and robust Micro-Pattern Gaseous Detect...
The $\mu$-RWELL is a new generation Micro-Pattern Gaseous Detector, composed of two elements: the ca...
The micro-RWELL detector (μ-RWELL) is a single amplification stage resistive Micro Pattern Gaseous D...
The $\mu$-RWELL is a single-amplification stage resistive MPGD. The amplification element, realized ...
The micro-RWELL is a single amplification stage resistive Micro-Pattern Gaseous Detector, realized w...
Motivated mainly by future detector upgrades at HL-LHC and at future colliders, most of the HEP R&D ...
Abstract In this work we present two innovative architectures of resistive MPGDs based on the WELL-a...
An R&D; project has been recently started to consolidate the technology of resistive Micromegas for ...
Motivated mainly by future upgrades at high-luminosity LHC (HL-LHC) and detectors at future accelera...
Started few years ago, the goal of this R&D project is to develop a new generation of single amplifi...
One of the main objectives within the community of the Micro-Pattern-Gaseous-Detectors (MPGD) is the...
Started few years ago, the goal of this R&D; project is to develop a new generation of single amplif...
In this work we present a novel idea for a compact spark-protected single amplification stage Micro-...
The μ-RWELL is a single-amplification stage resistive Micro-Pattern Gaseous Detector (MPGD) . The de...
The μ-RWELL has been conceived as a compact, simple and robust Micro-Pattern-Gaseous-Detector (MPGD)...
The micro-Resistive WELL ($\mu $-RWELL) is a compact, simple and robust Micro-Pattern Gaseous Detect...
The $\mu$-RWELL is a new generation Micro-Pattern Gaseous Detector, composed of two elements: the ca...
The micro-RWELL detector (μ-RWELL) is a single amplification stage resistive Micro Pattern Gaseous D...
The $\mu$-RWELL is a single-amplification stage resistive MPGD. The amplification element, realized ...
The micro-RWELL is a single amplification stage resistive Micro-Pattern Gaseous Detector, realized w...
Motivated mainly by future detector upgrades at HL-LHC and at future colliders, most of the HEP R&D ...
Abstract In this work we present two innovative architectures of resistive MPGDs based on the WELL-a...
An R&D; project has been recently started to consolidate the technology of resistive Micromegas for ...
Motivated mainly by future upgrades at high-luminosity LHC (HL-LHC) and detectors at future accelera...
Started few years ago, the goal of this R&D project is to develop a new generation of single amplifi...
One of the main objectives within the community of the Micro-Pattern-Gaseous-Detectors (MPGD) is the...
Started few years ago, the goal of this R&D; project is to develop a new generation of single amplif...
In this work we present a novel idea for a compact spark-protected single amplification stage Micro-...