M J Boschini, S Della Torre, M Gervasi, D Grandi, G Jóhannesson, G La Vacca, N Masi, I V Moskalenko, S Pensotti, T A Porter, L Quadrani, P G Rancoita, D Rozza, M Tacconi
{"title":"用GalProp-HelMod框架推断宇宙射线原子核Z≤28的局域星际光谱。","authors":"M J Boschini, S Della Torre, M Gervasi, D Grandi, G Jóhannesson, G La Vacca, N Masi, I V Moskalenko, S Pensotti, T A Porter, L Quadrani, P G Rancoita, D Rozza, M Tacconi","doi":"10.3847/1538-4365/aba901","DOIUrl":null,"url":null,"abstract":"<p><p>Composition and spectra of Galactic cosmic rays (CRs) are vital for studies of high-energy processes in a variety of environments and on different scales, for interpretation of <i>γ</i>-ray and microwave observations, for disentangling possible signatures of new phenomena, and for understanding of our local Galactic neighborhood. Since its launch, AMS-02 has delivered outstanding-quality measurements of the spectra of <math><mover><mi>p</mi> <mo>¯</mo></mover> </math> , <i>e</i> <sup>±</sup>, and nuclei: <sub>1</sub>H-<sub>8</sub>O, <sub>10</sub>Ne, <sub>12</sub>Mg, <sub>14</sub>Si. These measurements resulted in a number of breakthroughs; however, spectra of heavier nuclei and especially low-abundance nuclei are not expected until later in the mission. Meanwhile, a comparison of published AMS-02 results with earlier data from HEAO-3-C2 indicates that HEAO-3-C2 data may be affected by undocumented systematic errors. Utilizing such data to compensate for the lack of AMS-02 measurements could result in significant errors. In this paper we show that <i>a fraction</i> of HEAO-3-C2 data <i>match</i> available AMS-02 measurements quite well and can be used together with Voyager 1 and ACE-CRIS data to make <i>predictions</i> for the local interstellar spectra (LIS) of nuclei that are not yet released by AMS-02. We are also updating our already-published LIS to provide a complete set from <sub>1</sub>H-<sub>28</sub>Ni in the energy range from 1 MeV nucleon<sup>-1</sup> to ~100-500 TeV nucleon<sup>-1</sup>, thus covering 8-9 orders of magnitude in energy. Our calculations employ the GalProp-HelMod framework, which has proved to be a reliable tool in deriving the LIS of CR <math><mover><mi>p</mi> <mo>¯</mo></mover> </math> , <i>e</i> <sup>-</sup>, and nuclei <sub>1</sub>H-<sub>8</sub>O.</p>","PeriodicalId":8588,"journal":{"name":"Astrophysical Journal Supplement Series","volume":"250 2","pages":""},"PeriodicalIF":8.6000,"publicationDate":"2020-10-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8549769/pdf/nihms-1742133.pdf","citationCount":"49","resultStr":"{\"title\":\"Inference of the Local Interstellar Spectra of Cosmic-Ray Nuclei <i>Z</i> ⩽ 28 with the GalProp-HelMod Framework.\",\"authors\":\"M J Boschini, S Della Torre, M Gervasi, D Grandi, G Jóhannesson, G La Vacca, N Masi, I V Moskalenko, S Pensotti, T A Porter, L Quadrani, P G Rancoita, D Rozza, M Tacconi\",\"doi\":\"10.3847/1538-4365/aba901\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Composition and spectra of Galactic cosmic rays (CRs) are vital for studies of high-energy processes in a variety of environments and on different scales, for interpretation of <i>γ</i>-ray and microwave observations, for disentangling possible signatures of new phenomena, and for understanding of our local Galactic neighborhood. Since its launch, AMS-02 has delivered outstanding-quality measurements of the spectra of <math><mover><mi>p</mi> <mo>¯</mo></mover> </math> , <i>e</i> <sup>±</sup>, and nuclei: <sub>1</sub>H-<sub>8</sub>O, <sub>10</sub>Ne, <sub>12</sub>Mg, <sub>14</sub>Si. These measurements resulted in a number of breakthroughs; however, spectra of heavier nuclei and especially low-abundance nuclei are not expected until later in the mission. Meanwhile, a comparison of published AMS-02 results with earlier data from HEAO-3-C2 indicates that HEAO-3-C2 data may be affected by undocumented systematic errors. Utilizing such data to compensate for the lack of AMS-02 measurements could result in significant errors. In this paper we show that <i>a fraction</i> of HEAO-3-C2 data <i>match</i> available AMS-02 measurements quite well and can be used together with Voyager 1 and ACE-CRIS data to make <i>predictions</i> for the local interstellar spectra (LIS) of nuclei that are not yet released by AMS-02. We are also updating our already-published LIS to provide a complete set from <sub>1</sub>H-<sub>28</sub>Ni in the energy range from 1 MeV nucleon<sup>-1</sup> to ~100-500 TeV nucleon<sup>-1</sup>, thus covering 8-9 orders of magnitude in energy. 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Inference of the Local Interstellar Spectra of Cosmic-Ray Nuclei Z ⩽ 28 with the GalProp-HelMod Framework.
Composition and spectra of Galactic cosmic rays (CRs) are vital for studies of high-energy processes in a variety of environments and on different scales, for interpretation of γ-ray and microwave observations, for disentangling possible signatures of new phenomena, and for understanding of our local Galactic neighborhood. Since its launch, AMS-02 has delivered outstanding-quality measurements of the spectra of , e±, and nuclei: 1H-8O, 10Ne, 12Mg, 14Si. These measurements resulted in a number of breakthroughs; however, spectra of heavier nuclei and especially low-abundance nuclei are not expected until later in the mission. Meanwhile, a comparison of published AMS-02 results with earlier data from HEAO-3-C2 indicates that HEAO-3-C2 data may be affected by undocumented systematic errors. Utilizing such data to compensate for the lack of AMS-02 measurements could result in significant errors. In this paper we show that a fraction of HEAO-3-C2 data match available AMS-02 measurements quite well and can be used together with Voyager 1 and ACE-CRIS data to make predictions for the local interstellar spectra (LIS) of nuclei that are not yet released by AMS-02. We are also updating our already-published LIS to provide a complete set from 1H-28Ni in the energy range from 1 MeV nucleon-1 to ~100-500 TeV nucleon-1, thus covering 8-9 orders of magnitude in energy. Our calculations employ the GalProp-HelMod framework, which has proved to be a reliable tool in deriving the LIS of CR , e-, and nuclei 1H-8O.
期刊介绍:
The Astrophysical Journal Supplement (ApJS) serves as an open-access journal that publishes significant articles featuring extensive data or calculations in the field of astrophysics. It also facilitates Special Issues, presenting thematically related papers simultaneously in a single volume.