This article presents the recent (2017-2018) electronics modifications for the upgrade of the TOTEM roman pot detectors at the CERN LHC. To improve the timing accuracy and reliability the new Roman Pot detector configuration utilizes both DSDD (Double Side Diamond Detector) and silicon (UFSD, Ultra Fast Silicon Detector) mounted on hybrid boards. The electronics described was designed, built and tested by the authors in Faculty of Electrical Engineering in Pilsen, Department of Applied Electronics and Telecommunications, University of West Bohemia and by the TOTEM experiment at CERN. With the new detector setup, timing measurements with resolution down to tens of picoseconds are possible.Peer reviewe
The TOTEM Experiment is designed to measure the total proton-proton cross-section with the luminosit...
The Roman pots of the TOTEM experiment at LHC will be equipped with edgeless silicon micro-strip det...
The Large Hadron Collider (LHC) at CERN has been designed to achieve the unprecedented luminosity of...
This article presents the recent (2017-2018) electronics modifications for the upgrade of the TOTEM ...
The upgrade program of the TOTEM experiment foresees the installation of timing detectors in- side v...
3 pages, 8 figures, proceedings of PAC05, Knoxville, Tennessee, USA, May 2005The TOTEM collaboration...
This paper describes the design and the performance of the timing detector developed by the TOTEM Co...
AbstractWe describe the upgrade project developed by the TOTEM Collaboration to measure the time of ...
This paper describes the performance of a prototype timing detector, based on 50 mu m thick Ultra Fa...
We describe the upgrade project developed by the TOTEM Collaboration to measure the time of flight (...
TOTEM Roman Pot (RP) microstrip edgeless silicon detectors, fabricated with standard planar technolo...
In order to improve the time precision of detectors based on diamonds sensors we have built a detect...
This Technical Specification describes the main features of the Edgeless Strip Detectors (ESD) to be...
The TOTEM collaboration has developed and tested the first prototype of its Roman Pots to be operate...
The TOTEM upgrade programme focuses on improving the experiment’s capability to explore and measure ...
The TOTEM Experiment is designed to measure the total proton-proton cross-section with the luminosit...
The Roman pots of the TOTEM experiment at LHC will be equipped with edgeless silicon micro-strip det...
The Large Hadron Collider (LHC) at CERN has been designed to achieve the unprecedented luminosity of...
This article presents the recent (2017-2018) electronics modifications for the upgrade of the TOTEM ...
The upgrade program of the TOTEM experiment foresees the installation of timing detectors in- side v...
3 pages, 8 figures, proceedings of PAC05, Knoxville, Tennessee, USA, May 2005The TOTEM collaboration...
This paper describes the design and the performance of the timing detector developed by the TOTEM Co...
AbstractWe describe the upgrade project developed by the TOTEM Collaboration to measure the time of ...
This paper describes the performance of a prototype timing detector, based on 50 mu m thick Ultra Fa...
We describe the upgrade project developed by the TOTEM Collaboration to measure the time of flight (...
TOTEM Roman Pot (RP) microstrip edgeless silicon detectors, fabricated with standard planar technolo...
In order to improve the time precision of detectors based on diamonds sensors we have built a detect...
This Technical Specification describes the main features of the Edgeless Strip Detectors (ESD) to be...
The TOTEM collaboration has developed and tested the first prototype of its Roman Pots to be operate...
The TOTEM upgrade programme focuses on improving the experiment’s capability to explore and measure ...
The TOTEM Experiment is designed to measure the total proton-proton cross-section with the luminosit...
The Roman pots of the TOTEM experiment at LHC will be equipped with edgeless silicon micro-strip det...
The Large Hadron Collider (LHC) at CERN has been designed to achieve the unprecedented luminosity of...