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High-yield thermalized positronium at room temperature emitted by morphologically tuned nanochanneled silicon targets
Nanochanneled silicon targets with high positron/positronium (Ps) conversion rate and efficient Ps cooling were produced. Morphological parameters of the nanochannels, such as their diameter and length, were adjusted to get a large fraction of thermalized Ps at room temperature being emitted into va...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
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2021
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1088/1361-6455/abf6b6 http://cds.cern.ch/record/2767776 |
_version_ | 1780971407908274176 |
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author | Mariazzi, S Caravita, R Zimmer, C Rienäcker, B Camper, A Belov, A Bonomi, G Brusa, R S Castelli, F Consolati, G Doser, M Gjersdal, H Glöggler, L T Guatieri, F Haider, S Matveev, V Nebbia, G Nedelec, P Pagano, D Penasa, L Petracek, V Prelz, F Povolo, L Rhøne, O M Rotondi, A Sandaker, H Zurlo, N |
author_facet | Mariazzi, S Caravita, R Zimmer, C Rienäcker, B Camper, A Belov, A Bonomi, G Brusa, R S Castelli, F Consolati, G Doser, M Gjersdal, H Glöggler, L T Guatieri, F Haider, S Matveev, V Nebbia, G Nedelec, P Pagano, D Penasa, L Petracek, V Prelz, F Povolo, L Rhøne, O M Rotondi, A Sandaker, H Zurlo, N |
author_sort | Mariazzi, S |
collection | CERN |
description | Nanochanneled silicon targets with high positron/positronium (Ps) conversion rate and efficient Ps cooling were produced. Morphological parameters of the nanochannels, such as their diameter and length, were adjusted to get a large fraction of thermalized Ps at room temperature being emitted into vacuum. Ps cooling measurements were conducted combining single-shot positron annihilation lifetime spectroscopy and Doppler spectroscopy of the 13S → 23P transition. 2γ–3γ annihilation ratio measurements were also performed to estimate the positron/Ps conversion efficiency. In a converter with nanochannel diameter of 7–10 nm and depth of 3.89 μm, ∼28% of implanted positrons with an energy of 3.3 keV was found to be emitted as Ps with a transverse kinetic energy of 11 ± 2 meV. The reduction of the nanochannels depth to 1.13 μm, without changing the nanochannel diameter, was found to result in a less efficient cooling, highlighting the presence of Ps reflection from the bottom end of nanochannels. |
id | oai-inspirehep.net-1863683 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2021 |
record_format | invenio |
spelling | oai-inspirehep.net-18636832021-05-27T21:50:55Zdoi:10.1088/1361-6455/abf6b6http://cds.cern.ch/record/2767776engMariazzi, SCaravita, RZimmer, CRienäcker, BCamper, ABelov, ABonomi, GBrusa, R SCastelli, FConsolati, GDoser, MGjersdal, HGlöggler, L TGuatieri, FHaider, SMatveev, VNebbia, GNedelec, PPagano, DPenasa, LPetracek, VPrelz, FPovolo, LRhøne, O MRotondi, ASandaker, HZurlo, NHigh-yield thermalized positronium at room temperature emitted by morphologically tuned nanochanneled silicon targetsPhysics in GeneralNanochanneled silicon targets with high positron/positronium (Ps) conversion rate and efficient Ps cooling were produced. Morphological parameters of the nanochannels, such as their diameter and length, were adjusted to get a large fraction of thermalized Ps at room temperature being emitted into vacuum. Ps cooling measurements were conducted combining single-shot positron annihilation lifetime spectroscopy and Doppler spectroscopy of the 13S → 23P transition. 2γ–3γ annihilation ratio measurements were also performed to estimate the positron/Ps conversion efficiency. In a converter with nanochannel diameter of 7–10 nm and depth of 3.89 μm, ∼28% of implanted positrons with an energy of 3.3 keV was found to be emitted as Ps with a transverse kinetic energy of 11 ± 2 meV. The reduction of the nanochannels depth to 1.13 μm, without changing the nanochannel diameter, was found to result in a less efficient cooling, highlighting the presence of Ps reflection from the bottom end of nanochannels.oai:inspirehep.net:18636832021 |
spellingShingle | Physics in General Mariazzi, S Caravita, R Zimmer, C Rienäcker, B Camper, A Belov, A Bonomi, G Brusa, R S Castelli, F Consolati, G Doser, M Gjersdal, H Glöggler, L T Guatieri, F Haider, S Matveev, V Nebbia, G Nedelec, P Pagano, D Penasa, L Petracek, V Prelz, F Povolo, L Rhøne, O M Rotondi, A Sandaker, H Zurlo, N High-yield thermalized positronium at room temperature emitted by morphologically tuned nanochanneled silicon targets |
title | High-yield thermalized positronium at room temperature emitted by morphologically tuned nanochanneled silicon targets |
title_full | High-yield thermalized positronium at room temperature emitted by morphologically tuned nanochanneled silicon targets |
title_fullStr | High-yield thermalized positronium at room temperature emitted by morphologically tuned nanochanneled silicon targets |
title_full_unstemmed | High-yield thermalized positronium at room temperature emitted by morphologically tuned nanochanneled silicon targets |
title_short | High-yield thermalized positronium at room temperature emitted by morphologically tuned nanochanneled silicon targets |
title_sort | high-yield thermalized positronium at room temperature emitted by morphologically tuned nanochanneled silicon targets |
topic | Physics in General |
url | https://dx.doi.org/10.1088/1361-6455/abf6b6 http://cds.cern.ch/record/2767776 |
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