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Results from a Pilot Study on the Measurement of Nuclear Fragmentation with NA61/SHINE at the CERN SPS: $^{11}\text{C}$ Production in $\text{C+p}$ Interactions at 13.5 A GeV/c
We report the analysis of data taken during a pilot run in 2018 to study the feasibility of nuclear fragmentation measurements with the NA61/SHINE experiment at the CERN SPS. These nuclear reactions are important for the interpretation of secondary cosmic-ray nuclei production (Li, Be, and B) in the...
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Lenguaje: | eng |
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2021
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Acceso en línea: | https://dx.doi.org/10.22323/1.395.0102 http://cds.cern.ch/record/2777057 |
_version_ | 1780971660075073536 |
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author | Amin, Neeraj |
author_facet | Amin, Neeraj |
author_sort | Amin, Neeraj |
collection | CERN |
description | We report the analysis of data taken during a pilot run in 2018 to study the feasibility of nuclear fragmentation measurements with the NA61/SHINE experiment at the CERN SPS.
These nuclear reactions are important for the interpretation of secondary cosmic-ray nuclei production (Li, Be, and B) in the Galaxy.
The pilot data were taken with $^{12}\text{C}$ projectiles at a beam momentum of 13.5 A GeV/c and two fixed targets, polyethylene (C$_2$H$_4$) and graphite.
The specific focus here is the measurement of total Boron ($^{10}\text{B}$ and $^{11}\text{B}$) production cross section in C+p interactions at 13.5 A GeV/c.
The cosmic-ray nucleus $^{11}\text{C}$ is termed a `Ghost nucleus' on account of its short lifetime compared to the usual cosmic-ray diffusion time in the Galaxy and it ultimately decays to Boron as, $^{11}\text{C} \to ^{11}\text{B} + \beta^+$.
Therefore, precise knowledge of the production cross section of $^{11}\text{C}$ is very relevant for the understanding of Boron production in the Galaxy.
We present a preliminary measurement of the fragmentation cross section of $\text{C} + \text{p} \to ^{11}\text{C}$, which, together with our previously reported B-production cross section, provides a new constraint on boron production in the Galaxy in the high-energy range relevant for modern space based cosmic-ray experiments like AMS-02. |
id | cern-2777057 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2021 |
record_format | invenio |
spelling | cern-27770572023-01-31T08:31:05Zdoi:10.22323/1.395.0102http://cds.cern.ch/record/2777057engAmin, NeerajResults from a Pilot Study on the Measurement of Nuclear Fragmentation with NA61/SHINE at the CERN SPS: $^{11}\text{C}$ Production in $\text{C+p}$ Interactions at 13.5 A GeV/castro-ph.HEAstrophysics and Astronomynucl-exNuclear Physics - ExperimentWe report the analysis of data taken during a pilot run in 2018 to study the feasibility of nuclear fragmentation measurements with the NA61/SHINE experiment at the CERN SPS. These nuclear reactions are important for the interpretation of secondary cosmic-ray nuclei production (Li, Be, and B) in the Galaxy. The pilot data were taken with $^{12}\text{C}$ projectiles at a beam momentum of 13.5 A GeV/c and two fixed targets, polyethylene (C$_2$H$_4$) and graphite. The specific focus here is the measurement of total Boron ($^{10}\text{B}$ and $^{11}\text{B}$) production cross section in C+p interactions at 13.5 A GeV/c. The cosmic-ray nucleus $^{11}\text{C}$ is termed a `Ghost nucleus' on account of its short lifetime compared to the usual cosmic-ray diffusion time in the Galaxy and it ultimately decays to Boron as, $^{11}\text{C} \to ^{11}\text{B} + \beta^+$. Therefore, precise knowledge of the production cross section of $^{11}\text{C}$ is very relevant for the understanding of Boron production in the Galaxy. We present a preliminary measurement of the fragmentation cross section of $\text{C} + \text{p} \to ^{11}\text{C}$, which, together with our previously reported B-production cross section, provides a new constraint on boron production in the Galaxy in the high-energy range relevant for modern space based cosmic-ray experiments like AMS-02.We report the analysis of data taken during a pilot run in 2018 to study the feasibility of nuclear fragmentation measurements with the NA61/SHINE experiment at the CERN SPS. These nuclear reactions are important for the interpretation of secondary cosmic-ray nuclei production (Li, Be, and B) in the Galaxy. The pilot data were taken with $^{12}\text{C}$ projectiles at a beam momentum of 13.5 A GeV/c and two fixed targets, polyethylene (C$_2$H$_4$) and graphite. The specific focus here is the measurement of total Boron ($^{10}\text{B}$ and $^{11}\text{B}$) production cross section in $\text{C+p}$ interactions at 13.5 A GeV/c. The cosmic-ray nucleus $^{11}\text{C}$ is termed a `Ghost nucleus' on account of its short lifetime compared to the usual cosmic-ray diffusion time in the Galaxy and it ultimately decays to Boron as, $^{11}\text{C} \to ^{11}\text{B} + \beta^+$. Therefore, precise knowledge of the production cross section of $^{11}\text{C}$ is very relevant for the understanding of Boron production in the Galaxy. We present a preliminary measurement of the fragmentation cross section of $\text{C+p}\to ^{11}\text{C}$, which, together with our previously reported B-production cross section, provides a new constraint on Boron production in the Galaxy in the high-energy range relevant for modern space based cosmic-ray experiments like AMS-02.arXiv:2107.12275oai:cds.cern.ch:27770572021 |
spellingShingle | astro-ph.HE Astrophysics and Astronomy nucl-ex Nuclear Physics - Experiment Amin, Neeraj Results from a Pilot Study on the Measurement of Nuclear Fragmentation with NA61/SHINE at the CERN SPS: $^{11}\text{C}$ Production in $\text{C+p}$ Interactions at 13.5 A GeV/c |
title | Results from a Pilot Study on the Measurement of Nuclear Fragmentation with NA61/SHINE at the CERN SPS: $^{11}\text{C}$ Production in $\text{C+p}$ Interactions at 13.5 A GeV/c |
title_full | Results from a Pilot Study on the Measurement of Nuclear Fragmentation with NA61/SHINE at the CERN SPS: $^{11}\text{C}$ Production in $\text{C+p}$ Interactions at 13.5 A GeV/c |
title_fullStr | Results from a Pilot Study on the Measurement of Nuclear Fragmentation with NA61/SHINE at the CERN SPS: $^{11}\text{C}$ Production in $\text{C+p}$ Interactions at 13.5 A GeV/c |
title_full_unstemmed | Results from a Pilot Study on the Measurement of Nuclear Fragmentation with NA61/SHINE at the CERN SPS: $^{11}\text{C}$ Production in $\text{C+p}$ Interactions at 13.5 A GeV/c |
title_short | Results from a Pilot Study on the Measurement of Nuclear Fragmentation with NA61/SHINE at the CERN SPS: $^{11}\text{C}$ Production in $\text{C+p}$ Interactions at 13.5 A GeV/c |
title_sort | results from a pilot study on the measurement of nuclear fragmentation with na61/shine at the cern sps: $^{11}\text{c}$ production in $\text{c+p}$ interactions at 13.5 a gev/c |
topic | astro-ph.HE Astrophysics and Astronomy nucl-ex Nuclear Physics - Experiment |
url | https://dx.doi.org/10.22323/1.395.0102 http://cds.cern.ch/record/2777057 |
work_keys_str_mv | AT aminneeraj resultsfromapilotstudyonthemeasurementofnuclearfragmentationwithna61shineatthecernsps11textcproductionintextcpinteractionsat135agevc |