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1.
Impact of Neutron Irradiation on LGADs with a Carbon-Enriched Shallow Multiplication Layer: Degradation of Timing Performance and Gain / Ramos, E. Navarrete (Cantabria Inst. of Phys.) ; Duarte-Campderros, J. (Cantabria Inst. of Phys.) ; Fernández, M. (Cantabria Inst. of Phys.) ; Gómez, G. (Cantabria Inst. of Phys.) ; González, J. (Cantabria Inst. of Phys.) ; Hidalgo, S. (Barcelona, Inst. Microelectron.) ; Jaramillo, R. (Cantabria Inst. of Phys.) ; Martínez Ruiz del Arbol, P. (Cantabria Inst. of Phys.) ; Moll, M. (CERN) ; Quintana, C. (Cantabria Inst. of Phys.) et al.
In this radiation tolerance study, Low Gain Avalanche Detectors (LGADs) with a carbon-enriched broad and shallow multiplication layer were examined in comparison to identical non-carbonated LGADs. [...]
arXiv:2406.01267.
- 23 p.
Fulltext
2.
Fiber laser system of 1550 nm femtosecond pulses with configurable properties for the two-photon excitation of transient currents in semiconductor detectors / Almagro-Ruiz, Azahara (Guglielmo Marconi U.) ; Pape, Sebastian (CERN ; Dortmund U.) ; Muñoz-Marco, Héctor (Guglielmo Marconi U.) ; Wiehe, Moritz (CERN ; Freiburg U.) ; Currás, Esteban (CERN) ; Fernández-García, Marcos (CERN ; Cantabria Inst. of Phys.) ; Moll, Michael (CERN) ; Montero, Raúl (Basque U., Bilbao) ; Palomo, Francisco Rogelio (Seville U.) ; Quintana, Cristian (Cantabria Inst. of Phys.) et al.
A fiber laser system emitting ultrashort femtosecond pulses at 1550 nm with configurable properties has been developed as an excitation source for the two-photon absorption transient current technique (TPA-TCT). The modules of the system are designed to provide the optical specifications required at the output for localized characterization of semiconductor radiation detectors: variation of pulse energy between 10 nJ and 10p J, variation of the pulse repetition rate from 8.2 MHz to single shot, and variation of pulse duration between 300 and 600 fs. [...]
2022 - 12 p. - Published in : Appl. Opt. 61 (2022) 9386-9397
3.
First observation of the charge carrier density related gain reduction mechanism in LGADs with the Two Photon Absorption-Transient Current Technique / Pape, S (CERN ; Tech. U., Dortmund (main)) ; Currás, E (CERN) ; Fernández García, M (Cantabria Inst. of Phys.) ; Moll, M (CERN) ; Montero, R (Basque U., Bilbao) ; Palomo, F R (Seville U.) ; Vila, I (Cantabria Inst. of Phys.) ; Wiehe, M (CERN ; Freiburg U.) ; Quintana, C (Cantabria Inst. of Phys.)
The Low Gain Avalanche Detector (LGAD) technology is very promising for silicon timing detectors and currently heavily researched. Recent studies show that the gain of LGADs highly depends on the charge carrier density inside the gain layer. [...]
2022 - 4 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1040 (2022) 167190 Fulltext: PDF;

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