论文标题

关于非常局部星际介质中银河宇宙射线各向异性的能量依赖性

On the Energy Dependence of Galactic Cosmic Ray Anisotropies in the Very Local Interstellar Medium

论文作者

Nikoukar, Romina, Hill, Matthew E., Brown, Lawrence, Krimigis, Stamatios M., Decker, Robert B., Dialynas, Konstantinos, Kota, Jozsef, Roelof, Edmond C., Lasley, Scott, Hamilton, Douglas C., Florinski, Vladimir, Giacalone, Joe, Richardson, John, Opher, Merav

论文摘要

我们报告了在Voyager 1(V1)航天器上通过低能带电粒子(LECP)仪器测量的非常局部星际介质(VLISM)中银河宇宙射线(GCR)的能量依赖性。 LECP仪器包括一个双端稳态检测器粒子望远镜在八个同等间隔的角扇区中机械扫描360度。如前所述,LECP测量结果显示,在2012年V1 Heliopause(HP)越过的所有> = 211 MEV计数率(CH31)的所有领域的GCR强度急剧增加,但是自那时以来,计数速率数据表明,围绕90°倾斜角的粒子的系统降低了系统的强度降低。为了阐明这些GCR各向异性在各种能量上的能量依赖性,我们使用> = 211 MeV通道的V1 LECP计数速率和脉冲高度分析仪(PHA)数据以及较低的能量LECP通道。我们的分析表明,尽管GCR各向异性在广泛的能量上存在,但在各向异性发作过程中,二阶各向异性幅度的幅度下降了。在较高速度处的俯仰角散射被认为是这种能量依赖性的潜在原因。讨论了散射均值自由路径和导致速度为主的散射率的弱刚度依赖性而产生的速度依赖性的可能原因。这种解释与最近报道的缺乏相应的GCR电子各向异性一致。

We report on the energy dependence of galactic cosmic rays (GCRs) in the very local interstellar medium (VLISM) as measured by the Low Energy Charged Particle (LECP) instrument on the Voyager 1 (V1) spacecraft. The LECP instrument includes a dual-ended solid state detector particle telescope mechanically scanning through 360 deg across eight equally-spaced angular sectors. As reported previously, LECP measurements showed a dramatic increase in GCR intensities for all sectors of the >=211 MeV count rate (CH31) at the V1 heliopause (HP) crossing in 2012, however, since then the count rate data have demonstrated systematic episodes of intensity decrease for particles around 90° pitch angle. To shed light on the energy dependence of these GCR anisotropies over a wide range of energies, we use V1 LECP count rate and pulse height analyzer (PHA) data from >=211 MeV channel together with lower energy LECP channels. Our analysis shows that while GCR anisotropies are present over a wide range of energies, there is a decreasing trend in the amplitude of second-order anisotropy with increasing energy during anisotropy episodes. A stronger pitch-angle scattering at the higher velocities is argued as a potential cause for this energy dependence. A possible cause for this velocity dependence arising from weak rigidity dependence of the scattering mean free path and resulting velocity-dominated scattering rate is discussed. This interpretation is consistent with a recently reported lack of corresponding GCR electron anisotropies.

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