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EFFECTS OF SOLAR MODULATION ON THE LOW-ENERGY COSMIC-RAY ANTIPROTON/PROTON RATIO

机译:太阳能对低能宇宙线反质子/质子比的影响

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We examine the transport of cosmic-ray protons and anitprotons from local interstellar space through the interplanetary medium to Earth and discuss the resulting effects on the low-energy antiproton/proton ratio at 1 AU. We find that the antiproton/proton ratio at energies above ~ 3 GeV is a useful diagnostic of cosmic-ray transport in the Galaxy. However, at energies below ~ 1 GeV the expected ratio is much more uncertain because of differences in the energy spectra and the resulting relative modulation of protons and antiprotons over the solar cycle, as well as uncertainties in the interstellar spectra. Using calculated interstellar spectra as references, we find that the antiproton/proton ratio at low energies varies by as much as an order of magnitude over the solar cycle. As a result, we recommend that attention be given instead to interpretation of the measured cosmic-ray antiproton energy spectrum rather than to the antiproton/proton ratio.
机译:我们研究了宇宙射线质子和反质子从局部星际空间通过行星际介质到地球的传输,并讨论了在1 AU下对低能反质子/质子比的影响。我们发现,能量在〜3 GeV以上的反质子/质子比是诊断银河系中宇宙射线传输的有用方法。然而,在低于1 GeV的能量下,由于能量谱的差异以及由此产生的质子和反质子在太阳周期内的相对调制,以及星际谱的不确定性,预期比率不确定性更大。使用计算出的星际光谱作为参考,我们发现低能量下的反质子/质子比在整个太阳周期内变化幅度高达一个数量级。因此,我们建议注意的是,应注意解释所测量的宇宙射线反质子能谱,而不是反质子/质子比。

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