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Testbeam Results of the Picosecond Avalanche Detector Proof-Of-Concept Prototype
The proof-of-concept prototype of the Picosecond Avalanche Detector, a multi-PN junction monolithic silicon detector with continuous gain layer deep in the sensor depleted region, was tested with a beam of 180 GeV pions at the CERN SPS. The prototype features low noise and fast SiGe BiCMOS front...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2022
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1088/1748-0221/17/10/P10040 http://cds.cern.ch/record/2826587 |
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author | Iacobucci, G. Zambito, S. Milanesio, M. Moretti, T. Saidi, J. Paolozzi, L. Munker, M. Cardella, R. Martinelli, F. Picardi, A. Rücker, H. Trusch, A. Valerio, P. Cadoux, F. Cardarelli, R. Débieux, S. Favre, Y. Fenoglio, C.A. Ferrere, D. Gonzalez-Sevilla, S. Gurimskaya, Y. Kotitsa, R. Magliocca, C. Nessi, M. Pizarro-Medina, A. Iglesias, J. Sabater Pinto, M. Vicente Barreto |
author_facet | Iacobucci, G. Zambito, S. Milanesio, M. Moretti, T. Saidi, J. Paolozzi, L. Munker, M. Cardella, R. Martinelli, F. Picardi, A. Rücker, H. Trusch, A. Valerio, P. Cadoux, F. Cardarelli, R. Débieux, S. Favre, Y. Fenoglio, C.A. Ferrere, D. Gonzalez-Sevilla, S. Gurimskaya, Y. Kotitsa, R. Magliocca, C. Nessi, M. Pizarro-Medina, A. Iglesias, J. Sabater Pinto, M. Vicente Barreto |
author_sort | Iacobucci, G. |
collection | CERN |
description | The proof-of-concept prototype of the Picosecond Avalanche
Detector, a multi-PN junction monolithic silicon detector with
continuous gain layer deep in the sensor depleted region, was tested
with a beam of 180 GeV pions at the CERN SPS. The prototype
features low noise and fast SiGe BiCMOS frontend electronics and
hexagonal pixels with 100 μm pitch. At a sensor bias voltage
of 125 V, the detector provides full efficiency and average time
resolution of 30, 25 and 17 ps in the overall pixel area for a
power consumption of 0.4, 0.9 and 2.7 W/cm$^{2}$, respectively. In
this first prototype the time resolution depends significantly on
the distance from the center of the pixel, varying at the highest
power consumption measured between 13 ps at the center of the pixel
and 25 ps in the inter-pixel region. |
id | cern-2826587 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2022 |
record_format | invenio |
spelling | cern-28265872023-06-29T04:21:15Zdoi:10.1088/1748-0221/17/10/P10040http://cds.cern.ch/record/2826587engIacobucci, G.Zambito, S.Milanesio, M.Moretti, T.Saidi, J.Paolozzi, L.Munker, M.Cardella, R.Martinelli, F.Picardi, A.Rücker, H.Trusch, A.Valerio, P.Cadoux, F.Cardarelli, R.Débieux, S.Favre, Y.Fenoglio, C.A.Ferrere, D.Gonzalez-Sevilla, S.Gurimskaya, Y.Kotitsa, R.Magliocca, C.Nessi, M.Pizarro-Medina, A.Iglesias, J. SabaterPinto, M. Vicente BarretoTestbeam Results of the Picosecond Avalanche Detector Proof-Of-Concept PrototypeDetectors and Experimental TechniquesThe proof-of-concept prototype of the Picosecond Avalanche Detector, a multi-PN junction monolithic silicon detector with continuous gain layer deep in the sensor depleted region, was tested with a beam of 180 GeV pions at the CERN SPS. The prototype features low noise and fast SiGe BiCMOS frontend electronics and hexagonal pixels with 100 μm pitch. At a sensor bias voltage of 125 V, the detector provides full efficiency and average time resolution of 30, 25 and 17 ps in the overall pixel area for a power consumption of 0.4, 0.9 and 2.7 W/cm$^{2}$, respectively. In this first prototype the time resolution depends significantly on the distance from the center of the pixel, varying at the highest power consumption measured between 13 ps at the center of the pixel and 25 ps in the inter-pixel region.The proof-of-concept prototype of the Picosecond Avalanche Detector, a multi-PN junction monolithic silicon detector with continuous gain layer deep in the sensor depleted region, was tested with a beam of 180 GeV pions at the CERN SPS. The prototype features low noise and fast SiGe BiCMOS frontend electronics and hexagonal pixels with 100 μm pitch. At a sensor bias voltage of 125 V, the detector provides full efficiency and average time resolution of 30, 25 and 17 ps in the overall pixel area for a power consumption of 0.4, 0.9 and 2.7 W/cm^2, respectively. In this first prototype the time resolution depends significantly on the distance from the center of the pixel, varying at the highest power consumption measured between 13 ps at the center of the pixel and 25 ps in the inter-pixel region.arXiv:2208.11019oai:cds.cern.ch:28265872022-08-23 |
spellingShingle | Detectors and Experimental Techniques Iacobucci, G. Zambito, S. Milanesio, M. Moretti, T. Saidi, J. Paolozzi, L. Munker, M. Cardella, R. Martinelli, F. Picardi, A. Rücker, H. Trusch, A. Valerio, P. Cadoux, F. Cardarelli, R. Débieux, S. Favre, Y. Fenoglio, C.A. Ferrere, D. Gonzalez-Sevilla, S. Gurimskaya, Y. Kotitsa, R. Magliocca, C. Nessi, M. Pizarro-Medina, A. Iglesias, J. Sabater Pinto, M. Vicente Barreto Testbeam Results of the Picosecond Avalanche Detector Proof-Of-Concept Prototype |
title | Testbeam Results of the Picosecond Avalanche Detector Proof-Of-Concept Prototype |
title_full | Testbeam Results of the Picosecond Avalanche Detector Proof-Of-Concept Prototype |
title_fullStr | Testbeam Results of the Picosecond Avalanche Detector Proof-Of-Concept Prototype |
title_full_unstemmed | Testbeam Results of the Picosecond Avalanche Detector Proof-Of-Concept Prototype |
title_short | Testbeam Results of the Picosecond Avalanche Detector Proof-Of-Concept Prototype |
title_sort | testbeam results of the picosecond avalanche detector proof-of-concept prototype |
topic | Detectors and Experimental Techniques |
url | https://dx.doi.org/10.1088/1748-0221/17/10/P10040 http://cds.cern.ch/record/2826587 |
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