3D silicon radiation detectors offer many advantages over planar detectors, including improved radiation tolerance and faster charge collection time. We proposed a new 3D architecture (referred to as 3D-stc), which features columnar electrodes of one doping type only, thus, allowing a considerable simplification of the manufacturing process. In this paper, we report selected results from the electrical characterization of 3D diodes fabricated with this technology, along with preliminary results on the charge collection efficiency of these devices
The increase of the radiation dose at the luminosity upgrade of the LHC (sLHC) necessitates the deve...
In the past two years, we have developed 3D detector technologies at ITC-irst (Trento, Italy). We ha...
We report on the development of 3D detectors at Fondazione Bruno Kessler - irst in the framework of ...
The 3D silicon radiation detectors are very promising devices to be used in environments requiring e...
In the past two years 3D silicon radiation detectors have been developed at Fondazione Bruno Kessler...
We report on the latest results from the development of 3-D silicon radiation detectors at Fondazion...
We report on the latest results from the development of 3D silicon radiation detectors at IRST (Tren...
The work presented here is the result of the collaborative effort between the University of Glasgow,...
In the past few years, there has been an increasing interest toward 3D silicon radiation detectors. ...
Recently, we presented a new 3D detector architecture aimed at simplifying the manufacturing process...
3D detectors are a novel variety of photodiode radiation detector, invented by Parker, Kenney and Se...
3D detectors are photodiode radiation detectors with n- and p-type electrode columns passing through...
For the unprecedentedly high radiation level at the sLHC, the luminosity upgrade of the LHC, new tra...
Various fabrications routes to create '3D' detectors have been investigated and the electrical chara...
The fabrication of 3D detectors which requires bulk micromachining of columnar electrodes has been r...
The increase of the radiation dose at the luminosity upgrade of the LHC (sLHC) necessitates the deve...
In the past two years, we have developed 3D detector technologies at ITC-irst (Trento, Italy). We ha...
We report on the development of 3D detectors at Fondazione Bruno Kessler - irst in the framework of ...
The 3D silicon radiation detectors are very promising devices to be used in environments requiring e...
In the past two years 3D silicon radiation detectors have been developed at Fondazione Bruno Kessler...
We report on the latest results from the development of 3-D silicon radiation detectors at Fondazion...
We report on the latest results from the development of 3D silicon radiation detectors at IRST (Tren...
The work presented here is the result of the collaborative effort between the University of Glasgow,...
In the past few years, there has been an increasing interest toward 3D silicon radiation detectors. ...
Recently, we presented a new 3D detector architecture aimed at simplifying the manufacturing process...
3D detectors are a novel variety of photodiode radiation detector, invented by Parker, Kenney and Se...
3D detectors are photodiode radiation detectors with n- and p-type electrode columns passing through...
For the unprecedentedly high radiation level at the sLHC, the luminosity upgrade of the LHC, new tra...
Various fabrications routes to create '3D' detectors have been investigated and the electrical chara...
The fabrication of 3D detectors which requires bulk micromachining of columnar electrodes has been r...
The increase of the radiation dose at the luminosity upgrade of the LHC (sLHC) necessitates the deve...
In the past two years, we have developed 3D detector technologies at ITC-irst (Trento, Italy). We ha...
We report on the development of 3D detectors at Fondazione Bruno Kessler - irst in the framework of ...