We report on the design and TCAD simulations of planar active-edge pixel sensors within the INFN PixFEL project. These devices are intended as one of the building blocks for the assembly of a multilayer, four-side buttable tile for X-ray imaging applications in future Free Electron Laser facilities. The requirements in terms of very wide dynamic range and tolerance to extremely high ionizing radiation doses call for high operation voltages. A comprehensive TCAD simulation study is presented, aimed at the best trade-offs between the minimization of the edge region size and the sensor breakdown voltage.

(2014). Design and TCAD simulations of planar active-edge pixel sensors for future XFEL applications . Retrieved from http://hdl.handle.net/10446/79590

Design and TCAD simulations of planar active-edge pixel sensors for future XFEL applications

MANGHISONI, Massimo;RE, Valerio;TRAVERSI, Gianluca;
2014-01-01

Abstract

We report on the design and TCAD simulations of planar active-edge pixel sensors within the INFN PixFEL project. These devices are intended as one of the building blocks for the assembly of a multilayer, four-side buttable tile for X-ray imaging applications in future Free Electron Laser facilities. The requirements in terms of very wide dynamic range and tolerance to extremely high ionizing radiation doses call for high operation voltages. A comprehensive TCAD simulation study is presented, aimed at the best trade-offs between the minimization of the edge region size and the sensor breakdown voltage.
2014
Dalla Betta, Gian Franco; Batignani, Giovanni; Benkechkache, Mohamed El Amine; Bettarini, Stefano; Casarosa, Giulia; Comotti, Daniele; Fabris, Lorenzo; Forti, Francesco; Grassi, Marco; Latreche Lassoued, Saida; Lodola, Luca; Malcovati, Piero; Manghisoni, Massimo; Mendicino, Roberto; Morsani, Fabio; Paladino, Antonio; Pancheri, Lucio; Paoloni, Eugenio; Ratti, Lodovico; Re, Valerio; Rizzo, Giuliana; Traversi, Gianluca; Vacchi, Carla; Verzellesi, Giovanni; Xu, Hesong
File allegato/i alla scheda:
File Dimensione del file Formato  
NSS2014_dallabetta.pdf

Solo gestori di archivio

Versione: postprint - versione referata/accettata senza referaggio
Licenza: Licenza default Aisberg
Dimensione del file 223.14 kB
Formato Adobe PDF
223.14 kB Adobe PDF   Visualizza/Apri
Pubblicazioni consigliate

Aisberg ©2008 Servizi bibliotecari, Università degli studi di Bergamo | Terms of use/Condizioni di utilizzo

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10446/79590
Citazioni
  • Scopus 4
  • ???jsp.display-item.citation.isi??? 0
social impact