Owing to their superior radiation hardness compared to planar detectors, 3D detectors are one of the most promising technologies for the LHC upgrade foreseen in 2017. Fondazione Bruno Kessler has developed 3D Double-side Double-Type Column (3D-DDTC) detectors providing a technological simplifications with respect to a standard 3D process while aiming at comparable detector performance. We present selected results from the electrical characterization of 3D-DDTC structures from the second batch made on p-type substrates, supported also by TCAD simulations
3D Silicon sensors fabricated at FBK-irst with the Double-side Double Type Column (DDTC) approach an...
We report on the functional characterization of the first batch of 3D Double-Sided Double Type Colum...
The fabrication of 3D detectors which requires bulk micromachining of columnar electrodes has been r...
Owing to their superior radiation hardness compared to planar detectors, 3D detectors are one of the...
We report on the electrical and functional characterization of 3D Double-side, Double-Type-Column (3...
We report on the latest results from the development of 3D silicon radiation detectors at IRST (Tren...
In this work, we report on the noise and signal properties of n-on-p, 3D Double-Side Double Type Col...
For the planned luminosity upgrade of the CERN LHC to the sLHC new radiation hard technologies for t...
We report on the development of n-on-p, 3D Double-Side Double Type Column (3D-DDTC) pixel detectors ...
We report on the main design and technological issues related to a modified 3D-DTTC (Double-side, Do...
We report on the latest results from the development of 3-D silicon radiation detectors at Fondazion...
3D Silicon sensors fabricated at FBK-irst with the Double-side Double Type Column (DDTC) approach an...
We present selected results from the functional characterization of 3D-Double-Sided Double-Type Colu...
3D detectors are photodiode radiation detectors with n- and p-type electrode columns passing through...
We report on the development of 3D detectors at Fondazione Bruno Kessler - irst in the framework of ...
3D Silicon sensors fabricated at FBK-irst with the Double-side Double Type Column (DDTC) approach an...
We report on the functional characterization of the first batch of 3D Double-Sided Double Type Colum...
The fabrication of 3D detectors which requires bulk micromachining of columnar electrodes has been r...
Owing to their superior radiation hardness compared to planar detectors, 3D detectors are one of the...
We report on the electrical and functional characterization of 3D Double-side, Double-Type-Column (3...
We report on the latest results from the development of 3D silicon radiation detectors at IRST (Tren...
In this work, we report on the noise and signal properties of n-on-p, 3D Double-Side Double Type Col...
For the planned luminosity upgrade of the CERN LHC to the sLHC new radiation hard technologies for t...
We report on the development of n-on-p, 3D Double-Side Double Type Column (3D-DDTC) pixel detectors ...
We report on the main design and technological issues related to a modified 3D-DTTC (Double-side, Do...
We report on the latest results from the development of 3-D silicon radiation detectors at Fondazion...
3D Silicon sensors fabricated at FBK-irst with the Double-side Double Type Column (DDTC) approach an...
We present selected results from the functional characterization of 3D-Double-Sided Double-Type Colu...
3D detectors are photodiode radiation detectors with n- and p-type electrode columns passing through...
We report on the development of 3D detectors at Fondazione Bruno Kessler - irst in the framework of ...
3D Silicon sensors fabricated at FBK-irst with the Double-side Double Type Column (DDTC) approach an...
We report on the functional characterization of the first batch of 3D Double-Sided Double Type Colum...
The fabrication of 3D detectors which requires bulk micromachining of columnar electrodes has been r...