Novel architectures of multi-anode silicon drift detectors with linear geometry (Multi-Linear Silicon Drift Detectors) have been developed to image X-rays and Compton electrons with excellent time resolution and achievable energy resolution better than 200 eV FWHM at 5.9 keV. In this paper we describe the novel features of Multi-Linear Silicon Drift Detectors and their possible operating modes highlighting the impact on the imaging and spectroscopic capabilities. An application example of Multi-Linear Silicon Drift Detectors for fast 2D elemental mapping by means of K-edge subtraction imaging is shown. The charge deposited by Compton electrons in a Multi-Linear Silicon Drift Detector prototype irradiated by a Na-22 source has been measured ...
The controlled-drift detector (CDD) is a fully- depleted silicon detector that allows 2-D position s...
Third and fourth generation light sources have revolutionized the research in many scientific and te...
To be position sensitive, silicon drift detectors (SDDs) require a trigger signal synchronous with t...
Novel architectures of multi-anode silicon drift detectors with linear geometry (Multi-Linear Silico...
Abstract Novel Silicon Drift Detectors (SDDs) with multi-linear architecture specifically intended...
Starting from the basic photon detection process in semiconductors function principles and propertie...
This paper describes recently developed Silicon Drift Detectors dedicated to high resolution time- a...
none26Large-area multi-anode Silicon Drift Detectors (SDDs) have X-ray imaging and spectroscopic cha...
We report on the performances of energy resolved detectors and electronics developed for X-ray absor...
The properties and performances of silicon driftdetectors for X-rayspectroscopy applications are pre...
Radiation detectors are used in a variety of fields to sense X-rays and y-rays, visible, UV and IR p...
Silicon Drift Detectors (SDDs) stand as a groundbreaking technology with a diverse range of applicat...
Multi-pixel fast silicon detectors represent the enabling technology for the next generation of spac...
The controlled-drift detector (CDD) is a fully- depleted silicon detector that allows 2-D position s...
Third and fourth generation light sources have revolutionized the research in many scientific and te...
To be position sensitive, silicon drift detectors (SDDs) require a trigger signal synchronous with t...
Novel architectures of multi-anode silicon drift detectors with linear geometry (Multi-Linear Silico...
Abstract Novel Silicon Drift Detectors (SDDs) with multi-linear architecture specifically intended...
Starting from the basic photon detection process in semiconductors function principles and propertie...
This paper describes recently developed Silicon Drift Detectors dedicated to high resolution time- a...
none26Large-area multi-anode Silicon Drift Detectors (SDDs) have X-ray imaging and spectroscopic cha...
We report on the performances of energy resolved detectors and electronics developed for X-ray absor...
The properties and performances of silicon driftdetectors for X-rayspectroscopy applications are pre...
Radiation detectors are used in a variety of fields to sense X-rays and y-rays, visible, UV and IR p...
Silicon Drift Detectors (SDDs) stand as a groundbreaking technology with a diverse range of applicat...
Multi-pixel fast silicon detectors represent the enabling technology for the next generation of spac...
The controlled-drift detector (CDD) is a fully- depleted silicon detector that allows 2-D position s...
Third and fourth generation light sources have revolutionized the research in many scientific and te...
To be position sensitive, silicon drift detectors (SDDs) require a trigger signal synchronous with t...