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Precision scans of the Pixel cell response of double sided 3D Pixel detectors to pion and X-ray beams

Three-dimensional (3D) silicon sensors offer potential advantages over standard planar sensors for radiation hardness in future high energy physics experiments and reduced charge-sharing for X-ray applications, but may introduce inefficiencies due to the columnar electrodes. These inefficiencies are...

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Detalles Bibliográficos
Autores principales: Mac Raighne, A, Gersabeck, M, Crossley, M, Alianelli, L, Lozano, M, Dumps, R, Fleta, C, Collins, P, Rodrigues, E, Sawhney, K J S, Tlustos, L, Pennicard, D, Buytaert, J, Stewart, G, Parkes, C, Eklund, L, Campbell, M, Marchal, J, Akiba, K, Pellegrini, G, Llopart, X, Plackett, R, Maneuski, D, Gligorov, V V, Tartoni, N, Nicol, M, Bates, R, Gallas, A, Gimenez, E N, van Beuzekom, M, John, M
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/6/05/P05002
http://cds.cern.ch/record/1399795
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author Mac Raighne, A
Gersabeck, M
Crossley, M
Alianelli, L
Lozano, M
Dumps, R
Fleta, C
Collins, P
Rodrigues, E
Sawhney, K J S
Tlustos, L
Pennicard, D
Buytaert, J
Stewart, G
Parkes, C
Eklund, L
Campbell, M
Marchal, J
Akiba, K
Pellegrini, G
Llopart, X
Plackett, R
Maneuski, D
Gligorov, V V
Tartoni, N
Nicol, M
Bates, R
Gallas, A
Gimenez, E N
van Beuzekom, M
John, M
author_facet Mac Raighne, A
Gersabeck, M
Crossley, M
Alianelli, L
Lozano, M
Dumps, R
Fleta, C
Collins, P
Rodrigues, E
Sawhney, K J S
Tlustos, L
Pennicard, D
Buytaert, J
Stewart, G
Parkes, C
Eklund, L
Campbell, M
Marchal, J
Akiba, K
Pellegrini, G
Llopart, X
Plackett, R
Maneuski, D
Gligorov, V V
Tartoni, N
Nicol, M
Bates, R
Gallas, A
Gimenez, E N
van Beuzekom, M
John, M
author_sort Mac Raighne, A
collection CERN
description Three-dimensional (3D) silicon sensors offer potential advantages over standard planar sensors for radiation hardness in future high energy physics experiments and reduced charge-sharing for X-ray applications, but may introduce inefficiencies due to the columnar electrodes. These inefficiencies are probed by studying variations in response across a unit pixel cell in a 55 m m pitch double-sided 3D pixel sensor bump bonded to TimePix and Medipix2 readout ASICs. Two complementary characterisation techniques are discussed: the first uses a custom built telescope and a 120GeV pion beam from the Super Proton Synchrotron (SPS) at CERN; the second employs a novel technique to illuminate the sensor with a micro-focused synchrotron X-ray beam at the Diamond Light Source, UK. For a pion beam incident perpendicular to the sensor plane an overall pixel efficiency of 93.0 +/- 0.5\% is measured. After a 10 degrees rotation of the device the effect of the columnar region becomes negligible and the overall efficiency rises to 99.8 +/- 0.5\%. The double-sided 3D sensor shows significantly reduced charge sharing to neighbouring pixels compared to the planar device. The charge sharing results obtained from the X-ray beam study of the 3D sensor are shown to agree with a simple simulation in which charge diffusion is neglected. The devices tested are found to be compatible with having a region in which no charge is collected centred on the electrode columns and of radius 7.6 +/- 0.6 mu m. Charge collection above and below the columnar electrodes in the double-sided 3D sensor is observed.
id cern-1399795
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
record_format invenio
spelling cern-13997952019-09-30T06:29:59Zdoi:10.1088/1748-0221/6/05/P05002http://cds.cern.ch/record/1399795engMac Raighne, AGersabeck, MCrossley, MAlianelli, LLozano, MDumps, RFleta, CCollins, PRodrigues, ESawhney, K J STlustos, LPennicard, DBuytaert, JStewart, GParkes, CEklund, LCampbell, MMarchal, JAkiba, KPellegrini, GLlopart, XPlackett, RManeuski, DGligorov, V VTartoni, NNicol, MBates, RGallas, AGimenez, E Nvan Beuzekom, MJohn, MPrecision scans of the Pixel cell response of double sided 3D Pixel detectors to pion and X-ray beamsDetectors and Experimental TechniquesThree-dimensional (3D) silicon sensors offer potential advantages over standard planar sensors for radiation hardness in future high energy physics experiments and reduced charge-sharing for X-ray applications, but may introduce inefficiencies due to the columnar electrodes. These inefficiencies are probed by studying variations in response across a unit pixel cell in a 55 m m pitch double-sided 3D pixel sensor bump bonded to TimePix and Medipix2 readout ASICs. Two complementary characterisation techniques are discussed: the first uses a custom built telescope and a 120GeV pion beam from the Super Proton Synchrotron (SPS) at CERN; the second employs a novel technique to illuminate the sensor with a micro-focused synchrotron X-ray beam at the Diamond Light Source, UK. For a pion beam incident perpendicular to the sensor plane an overall pixel efficiency of 93.0 +/- 0.5\% is measured. After a 10 degrees rotation of the device the effect of the columnar region becomes negligible and the overall efficiency rises to 99.8 +/- 0.5\%. The double-sided 3D sensor shows significantly reduced charge sharing to neighbouring pixels compared to the planar device. The charge sharing results obtained from the X-ray beam study of the 3D sensor are shown to agree with a simple simulation in which charge diffusion is neglected. The devices tested are found to be compatible with having a region in which no charge is collected centred on the electrode columns and of radius 7.6 +/- 0.6 mu m. Charge collection above and below the columnar electrodes in the double-sided 3D sensor is observed.oai:cds.cern.ch:13997952011
spellingShingle Detectors and Experimental Techniques
Mac Raighne, A
Gersabeck, M
Crossley, M
Alianelli, L
Lozano, M
Dumps, R
Fleta, C
Collins, P
Rodrigues, E
Sawhney, K J S
Tlustos, L
Pennicard, D
Buytaert, J
Stewart, G
Parkes, C
Eklund, L
Campbell, M
Marchal, J
Akiba, K
Pellegrini, G
Llopart, X
Plackett, R
Maneuski, D
Gligorov, V V
Tartoni, N
Nicol, M
Bates, R
Gallas, A
Gimenez, E N
van Beuzekom, M
John, M
Precision scans of the Pixel cell response of double sided 3D Pixel detectors to pion and X-ray beams
title Precision scans of the Pixel cell response of double sided 3D Pixel detectors to pion and X-ray beams
title_full Precision scans of the Pixel cell response of double sided 3D Pixel detectors to pion and X-ray beams
title_fullStr Precision scans of the Pixel cell response of double sided 3D Pixel detectors to pion and X-ray beams
title_full_unstemmed Precision scans of the Pixel cell response of double sided 3D Pixel detectors to pion and X-ray beams
title_short Precision scans of the Pixel cell response of double sided 3D Pixel detectors to pion and X-ray beams
title_sort precision scans of the pixel cell response of double sided 3d pixel detectors to pion and x-ray beams
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/6/05/P05002
http://cds.cern.ch/record/1399795
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