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Galactic cosmic ray H and He nuclei energy spectra measured by Voyagers 1 and 2 near the heliospheric termination shock in positive and negative solar magnetic polarity cycles

机译:在正负太阳磁极性循环中,由旅行者1和旅行者2测得的太阳系终止冲击附近的银河系宇宙射线H和He原子能谱

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摘要

Using data from the Voyager 1 and 2 spacecraft, we have followed the intensity variations of H, He and C + O nuclei between 1998 and 2008 and determined the spectra for H and He at the time of minimum modulation in 1998, when the solar magnetic polarity was positive and again in 2008 when the solar magnetic polarity was negative. At these times these data are representative of conditions near a heliospheric termination shock assumed to be located at ∼90 AU. Above ∼400 MeV/nuc for He nuclei the 11-year solar modulation cycle observed at the Earth is not seen; instead there is a 22-year variation. The negative polarity cycle intensities above ∼150 MeV/nuc are higher than those in the positive polarity cycle by a factor of 1.4–1.7 times for both H and He nuclei. Below ∼100 MeV/nuc the C nuclei intensities are similar in the two cycles to within ±10%. These observations are compared with theoretical calculations which also show a negative to positive polarity cycle intensity difference at higher energies, most likely associated with energy changes due to drifts near the termination shock, but the comparison suggests that improved estimates of the local interstellar spectra are required.
机译:利用旅行者1号和2号旅行者的数据,我们追踪了1998年至2008年H,He和C + O核的强度变化,并确定了1998年最小调制时H和He的光谱。极性为正,2008年太阳磁极性为负。在这些时候,这些数据代表了假定位于约90 AU的日球终止冲击附近的情况。对于He核而言,高于〜400 MeV / nuc时,看不到地球观测到的11年太阳调制周期。而是有22年的变化。对于H和He核,高于〜150 MeV / nuc的负极性循环强度比正极性循环强度高1.4-1.7倍。低于约100 MeV / nuc,两个循环中的C核强度相似,在±10%以内。这些观察结果与理论计算结果进行了比较,理论计算结果还表明,在较高能量下,极性循环强度强度会出现负向正极变化,这很可能与终止冲击附近的漂移引起的能量变化有关,但比较结果表明,需要改进对局部星际光谱的估算。

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