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Superconducting NbN microstrip detectors

Superconducting NbN strip transmission line counters and coupling circuits were processed on silicon wafers using thin film techniques, and they were characterized with several methods to verify the design principles. The stripline circuits, designed using microwave design rules, were simulated usin...

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Detalles Bibliográficos
Autores principales: Wedenig, R, Niinikoski, T O, Berglund, P, Kyynäräinen, J, Da Costa, L N, Valtonen, M J, Linna, R, Salmi, J, Seppä, H, Suni, I
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0168-9002(99)00476-3
http://cds.cern.ch/record/395863
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author Wedenig, R
Niinikoski, T O
Berglund, P
Kyynäräinen, J
Da Costa, L N
Valtonen, M J
Linna, R
Salmi, J
Seppä, H
Suni, I
author_facet Wedenig, R
Niinikoski, T O
Berglund, P
Kyynäräinen, J
Da Costa, L N
Valtonen, M J
Linna, R
Salmi, J
Seppä, H
Suni, I
author_sort Wedenig, R
collection CERN
description Superconducting NbN strip transmission line counters and coupling circuits were processed on silicon wafers using thin film techniques, and they were characterized with several methods to verify the design principles. The stripline circuits, designed using microwave design rules, were simulated using a circuit design tool enhanced to include modelling of the superconducting lines. The strips, etched out of the 282 nm thick top NbN film with resistivity 284 µ?cm at 20 K, have critical temperatures in the range 12 to 13 K and a critical current density approximately Jc(0) = 3.3·105 A/cm2. The linearized heat transfer coefficient between the strip and the substrate is approximately 1.1·105 W/(m2K) and the healing length is about 1.6 µm between 3 and 5 K temperatures. Traversing 5 MeV a-particles caused the strips to quench. No events due to electrons could be detected in agreement with the predicted signal amplitude which is below the noise threshold of our wideband circuitry. The strip bias current and hence the signal amplitude were limited due to a microbridge at the isolator step of the impedance transformer.
id cern-395863
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
record_format invenio
spelling cern-3958632019-09-30T06:29:59Zdoi:10.1016/S0168-9002(99)00476-3http://cds.cern.ch/record/395863engWedenig, RNiinikoski, T OBerglund, PKyynäräinen, JDa Costa, L NValtonen, M JLinna, RSalmi, JSeppä, HSuni, ISuperconducting NbN microstrip detectorsDetectors and Experimental TechniquesSuperconducting NbN strip transmission line counters and coupling circuits were processed on silicon wafers using thin film techniques, and they were characterized with several methods to verify the design principles. The stripline circuits, designed using microwave design rules, were simulated using a circuit design tool enhanced to include modelling of the superconducting lines. The strips, etched out of the 282 nm thick top NbN film with resistivity 284 µ?cm at 20 K, have critical temperatures in the range 12 to 13 K and a critical current density approximately Jc(0) = 3.3·105 A/cm2. The linearized heat transfer coefficient between the strip and the substrate is approximately 1.1·105 W/(m2K) and the healing length is about 1.6 µm between 3 and 5 K temperatures. Traversing 5 MeV a-particles caused the strips to quench. No events due to electrons could be detected in agreement with the predicted signal amplitude which is below the noise threshold of our wideband circuitry. The strip bias current and hence the signal amplitude were limited due to a microbridge at the isolator step of the impedance transformer.CERN-EP-99-054oai:cds.cern.ch:3958631999-02-16
spellingShingle Detectors and Experimental Techniques
Wedenig, R
Niinikoski, T O
Berglund, P
Kyynäräinen, J
Da Costa, L N
Valtonen, M J
Linna, R
Salmi, J
Seppä, H
Suni, I
Superconducting NbN microstrip detectors
title Superconducting NbN microstrip detectors
title_full Superconducting NbN microstrip detectors
title_fullStr Superconducting NbN microstrip detectors
title_full_unstemmed Superconducting NbN microstrip detectors
title_short Superconducting NbN microstrip detectors
title_sort superconducting nbn microstrip detectors
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/S0168-9002(99)00476-3
http://cds.cern.ch/record/395863
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