============================ CALET Published Data Archive ============================ Modification Logs: 190925NC Y.Asaoka 210302 Y.Akaike 220405 Y.Akaike 220923 Y.Akaike 230103 Y.Akaike 230512 Y.Akaike 230606 Y.Akaike add 10. normalized count rates of electrons and protons 240117 Y.Akaike add 11. all-electrons ------------------------------------------------------------------------------------------- 1. all-electrons (2017) Ref.: O. Adriani et al. (CALET collaboration) Physical Review Letters 118, 181101 (2017) Supplemental Material Table 1 => File Name: CALET_all-electron_2017.dat Column 1: Lower edge of the energy bin (GeV) Column 2: Upper edge of the energy bin (GeV) Column 3: Representative energy (GeV) Column 4: Flux (m^-2 sr^-1 s^-1 GeV^-1) Column 5: Lower statistical error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 6: Upper statistical error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 7: Lower systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 8: Upper systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) ------------------------------------------------------------------------------------------- 2. all-electrons (2018) Ref.: O. Adriani et al. (CALET collaboration) Physical Review Letters 120, 261102 (2018) Supplemental Material Table 1 => File Name: CALET_all-electron_2018.dat Column 1: Lower edge of the energy bin (GeV) Column 2: Upper edge of the energy bin (GeV) Column 3: Representative energy (GeV) Column 4: Flux (m^-2 sr^-1 s^-1 GeV^-1) Column 5: Lower statistical error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 6: Upper statistical error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 7: Lower systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 8: Upper systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 9: Lower systematic error due to BDT stability (relative error to flux) Column 10: Upper systematic error due to BDT stability (relative error to flux) Column 11: Systematic error due to trigger (relative error to flux) Column 12: Systematic error in normalization (relative error to flux) Column 13: Energy dependent systematic error in tracking (relative error to flux) Column 14: Energy dependent systematic error in charge identification (relative error to flux) Column 15: Energy dependent systematic error in electron identification (relative error to flux) Column 16: Energy dependent systematic error due to MC model dependence (relative error to flux) Supplemental Material Table 2 => File Name: CALET_all-electron_2018-DAMPE-binning.dat Column 1: Lower edge of the energy bin (GeV) Column 2: Upper edge of the energy bin (GeV) Column 3: Representative energy (GeV) Column 4: Flux (m^-2 sr^-1 s^-1 GeV^-1) Column 5: Lower statistical error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 6: Upper statistical error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 7: Lower systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 8: Upper systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 9: Lower systematic error due to BDT stability (relative error to flux) Column 10: Upper systematic error due to BDT stability (relative error to flux) Column 11: Systematic error due to trigger (relative error to flux) Column 12: Systematic error in normalization (relative error to flux) Column 13: Energy dependent systematic error in tracking (relative error to flux) Column 14: Energy dependent systematic error in charge identification (relative error to flux) Column 15: Energy dependent systematic error in electron identification (relative error to flux) Column 16: Energy dependent systematic error due to MC model dependence (relative error to flux) ------------------------------------------------------------------------------------------- 3. protons (2019) Ref.: O. Adriani et al. (CALET collaboration) Physical Review Letters 122, 181102 (2019) Supplemental Material Table 1 => File Name: CALET_proton_2019.dat Column 1: Representative energy (GeV) Column 2: Systematic error in global energy scale (GeV) Column 3: Potentially energy-dependent systematic error in energy scale (GeV) Column 4: Lower edge of the energy bin (GeV) Column 5: Upper edge of the energy bin (GeV) Column 6: Flux (m^-2 sr^-1 s^-1 GeV^-1) Column 7: Lower statistical error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 8: Upper statistical error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 9: Lower systematic error in flux normalization (m^-2 sr^-1 s^-1 GeV^-1) Column 10: Upper systematic error in flux normalization (m^-2 sr^-1 s^-1 GeV^-1) Column 11: Lower energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 12: Upper energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) ------------------------------------------------------------------------------------------- 4. carbon and oxygen (2020) Ref.: O. Adriani et al. (CALET collaboration) Physical Review Letters 125, 251102 (2020) Supplimental Material Table 1 => File Name: CALET_carbon_2020.dat Column 1: Lower edge of the energy bin (GeV/n) Column 2: Upper edge of the energy bin (GeV/n) Column 3: Flux (m^-2 sr^-1 s^-1 (GeV/n)^-1) Column 4: Statistical error in flux (m^-2 sr^-1 s^-1 (GeV/n)^-1) Column 5: Lower systematic error in flux normalization (m^-2 sr^-1 s^-1 GeV^-1) Column 6: Upper systematic error in flux normalization (m^-2 sr^-1 s^-1 GeV^-1) Column 7: Lower energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 8: Upper energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Supplimental Material Table 2 => File Name: CALET_oxygen_2020.dat Column 1: Lower edge of the energy bin (GeV/n) Column 2: Upper edge of the energy bin (GeV/n) Column 3: Flux (m^-2 sr^-1 s^-1 (GeV/n)^-1) Column 4: Statistical error in flux (m^-2 sr^-1 s^-1 (GeV/n)^-1) Column 5: Lower systematic error in flux normalization (m^-2 sr^-1 s^-1 GeV^-1) Column 6: Upper systematic error in flux normalization (m^-2 sr^-1 s^-1 GeV^-1) Column 7: Lower energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 8: Upper energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Supplimental Material Table 3 => File Name: CALET_COratio_2020.dat Column 1: Lower edge of the energy bin (GeV/n) Column 2: Upper edge of the energy bin (GeV/n) Column 3: Flux ratio Column 4: Statistical error Column 5: Lower systematic error Column 6: Upper systematic error ------------------------------------------------------------------------------------------- 5. iron (2021) Ref.: O. Adriani et al. (CALET collaboration) Physical Review Letters 126, 241101 (2021) Supplimental Material Table 1 => File Name: CALET_iron_2021.dat Column 1: Lower edge of the energy bin (GeV/n) Column 2: Upper edge of the energy bin (GeV/n) Column 3: Flux (m^-2 sr^-1 s^-1 (GeV/n)^-1) Column 4: Statistical error in flux (m^-2 sr^-1 s^-1 (GeV/n)^-1) Column 5: Lower systematic error in flux normalization (m^-2 sr^-1 s^-1 GeV^-1) Column 6: Upper systematic error in flux normalization (m^-2 sr^-1 s^-1 GeV^-1) Column 7: Lower energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 8: Upper energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) ------------------------------------------------------------------------------------------- 6. nickel (2022) Ref.: O. Adriani et al. (CALET collaboration) Physical Review Letters 128, 131103 (2021) Supplimental Material Table 1 => File Name: CALET_nickel_2022.dat Column 1: Lower edge of the energy bin (GeV/n) Column 2: Upper edge of the energy bin (GeV/n) Column 3: Flux (m^-2 sr^-1 s^-1 (GeV/n)^-1) Column 4: Statistical error in flux (m^-2 sr^-1 s^-1 (GeV/n)^-1) Column 5: Lower systematic error in flux normalization (m^-2 sr^-1 s^-1 GeV^-1) Column 6: Upper systematic error in flux normalization (m^-2 sr^-1 s^-1 GeV^-1) Column 7: Lower energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 8: Upper energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) ------------------------------------------------------------------------------------------- 7. protons (2022) Ref.: O. Adriani et al. (CALET collaboration) Physical Review Letters 129, 101102 (2022) Supplemental Material Table 1 => File Name: CALET_proton_2022.dat Column 1: Representative energy (GeV) Column 2: Systematic error in global energy scale (GeV) Column 3: Potentially energy-dependent systematic error in energy scale (GeV) Column 4: Lower edge of the energy bin (GeV) Column 5: Upper edge of the energy bin (GeV) Column 6: Flux (m^-2 sr^-1 s^-1 GeV^-1) Column 7: Statistical error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 8: Systematic error in flux normalization (m^-2 sr^-1 s^-1 GeV^-1) Column 9: Lower energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 10: Upper energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) ------------------------------------------------------------------------------------------- 8. boron, carbon spectra and B/C raito (2022) Ref.: O. Adriani et al. (CALET collaboration) Physical Review Letters 129, 251103 (2022) Supplemental Material Table 1 => File Name: CALET_boron_2022.dat Column 1: Lower edge of the energy bin (GeV/n) Column 2: Upper edge of the energy bin (GeV/n) Column 3: Flux (m^-2 sr^-1 s^-1 (GeV/n)^-1) Column 4: Statistical error in flux (m^-2 sr^-1 s^-1 (GeV/n)^-1) Column 5: Systematic error in flux normalization (m^-2 sr^-1 s^-1 GeV^-1) Column 6: Lower energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 7: Upper energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Supplemental Material Table 2 => File Name: CALET_carbon_2022.dat Column 1: Lower edge of the energy bin (GeV/n) Column 2: Upper edge of the energy bin (GeV/n) Column 3: Flux (m^-2 sr^-1 s^-1 (GeV/n)^-1) Column 4: Statistical error in flux (m^-2 sr^-1 s^-1 (GeV/n)^-1) Column 5: Systematic error in flux normalization (m^-2 sr^-1 s^-1 GeV^-1) Column 6: Lower energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 7: Upper energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Supplemental Material Table 3 => File Name: CALET_BCratio_2022.dat Column 1: Lower edge of the energy bin (GeV/n) Column 2: Upper edge of the energy bin (GeV/n) Column 3: Flux ratio Column 4: Statistical error in flux ratio Column 5: Lower systematic error in flux ratio Column 6: Upper systematic error in flux ratio ------------------------------------------------------------------------------------------- 9. helium spectra and p/He raito (2022) Ref.: O. Adriani et al. (CALET collaboration) Physical Review Letters 130, 171002 (2023) Supplemental Material Table 1 => File Name: CALET_helium_2023.dat Column 1: Lower edge of the energy bin (GeV) Column 2: Upper edge of the energy bin (GeV) Column 3: Flux (m^-2 sr^-1 s^-1 GeV^-1) Column 4: Statistical error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 5: Systematic error in flux normalization (m^-2 sr^-1 s^-1 GeV^-1) Column 6: Lower energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 7: Upper energy-dependent systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Supplemental Material Table 2 => File Name: CALET_helium_pHeratio_2023.dat Column 1: Lower edge of the energy bin (GeV/n) Column 2: Upper edge of the energy bin (GeV/n) Column 3: Flux ratio Column 4: Statistical error in flux ratio Column 5: Lower systematic error in flux ratio Column 6: Upper systematic error in flux ratio Supplemental Material Table 3 => File Name: CALET_pHeratio_rigidity_2023.dat Column 1: Lower edge of the rigidity bin (GV) Column 2: Upper edge of the rigidity bin (GV) Column 3: Flux ratio Column 4: Statistical error in flux ratio Column 5: Lower systematic error in flux ratio Column 6: Upper systematic error in flux ratio ------------------------------------------------------------------------------------------- 10. normalized count rates of electrons and protons (2023) Ref.: O. Adriani et al. (CALET collaboration) Physical Review Letters 130, 211001 (2023) Supplemental Material Table 1 => File Name: CALET_LEE-electron_and_proton_2023.dat Column 1: Carrington rotation Column 2: Start date of each Carrington rotaion (month/day/year) Column 3: Normalized count rate of electrons (%) Column 4: Statistical error in normalized count rate of electrons (%) Column 5: Normalized count rate of protons (%) Column 6: Statistical error in normalized count rate of protons (%) Column 7: Fractional contaminations due to protons in the observed count rate of electrons and positrons Column 8: Error in fractional contaminations due to protons in the observed count rate of electrons and positrons Column 9: Fractional contaminations due to positrons in the observed count rate of electrons and positrons Column 10: Error in fractional contaminations due to positrons in the observed count rate of electrons and positrons Column 11: Fractional contaminations due to electrons and positrons in the observed proton count rate Column 12: Error in fractional contaminations due to electrons and positrons in the observed proton count rate ------------------------------------------------------------------------------------------- 11. all-electrons (2023) Ref.: O. Adriani et al. (CALET collaboration) Physical Review Letters 131, 191001 (2023) Supplemental Material Table 1 => File Name: CALET_all-electron_2023.dat Column 1: Lower edge of the energy bin (GeV) Column 2: Upper edge of the energy bin (GeV) Column 3: Representative energy (GeV) Column 4: Flux (m^-2 sr^-1 s^-1 GeV^-1) Column 5: Lower statistical error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 6: Upper statistical error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 7: Lower systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 8: Upper systematic error in flux (m^-2 sr^-1 s^-1 GeV^-1) Column 9: Lower systematic error due to BDT stability (relative error to flux) Column 10: Upper systematic error due to BDT stability (relative error to flux) Column 11: Systematic error due to trigger (relative error to flux) Column 12: Systematic error in normalization (relative error to flux) Column 13: Energy dependent systematic error in tracking (relative error to flux) Column 14: Energy dependent systematic error in charge identification (relative error to flux) Column 15: Energy dependent systematic error in electron identification (relative error to flux) Column 16: Energy dependent systematic error due to MC model dependence (relative error to flux)