外日球层和星际介质中非平衡离子速度分布产生MHD湍流:磁流体热力学和动力学观点

Q4 Physics and Astronomy Astronomical and Astrophysical Transactions Pub Date : 2007-12-13 DOI:10.1080/10556790701610316
H. Fahr, I. Chashei
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引用次数: 1

摘要

摘要研究表明,等离子体中出现的高能离子是由电荷交换诱导的新离子注入磁化等离子体背景而产生的,它们的流动是由于其自由转换的能量驱动Alfvenic和磁声型湍流。这一点尤为重要,特别是在具有超音速差体速度的强电荷交换流体的条件下,就像在内日球层的情况一样。这些离子驱动的波导致波动幅度的强烈增强。因此,低能和高能离子群都能部分地重新吸收这些波能,从而经历非热加热。作为一个定量的例子,我们计算了太阳风离子和吸收离子随太阳风向大太阳距离膨胀的非绝热行为。虽然吸收离子的行为接近等温,但正常太阳风离子的行为具有负的有效多向性指数,描述了发散等离子体流的温度升高....
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Generation of MHD turbulence by non-equilibrium ion velocity distributions in the outer heliosphere and the interstellar medium: magnetohydro-thermodynamic and kinetic views
Abstract We show that energetic ions, appearing in plasmas due to injection of charge-exchange-induced new ions into the magnetized plasma background, flow due to their freely convertible energy drive turbulences of Alfvenic and magneto-acoustic types. This becomes important especially under conditions of strongly charge-exchanging fluids with supersonic differential bulk velocities, as is the condition in the inner heliosphere. These ion-driven waves lead to strongly enhanced fluctuation amplitudes. As a consequence, both low- and high-energy ion populations can partly reabsorb these wave energies, and thereby experience non-thermal heatings. As a quantitative example, we calculate the non-adiabatic behaviours of solar wind ions and pick-up ions expanding with the solar wind towards large solar distances. While pick-up ions behave nearly isothermal, normal solar wind ions behave pseudo-polytropically with negative effective polytropic indices that describe temperature increases at diverging plasma flows....
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来源期刊
Astronomical and Astrophysical Transactions
Astronomical and Astrophysical Transactions Physics and Astronomy-Instrumentation
CiteScore
0.40
自引率
0.00%
发文量
16
期刊介绍: Astronomical and Astrophysical Transactions (AApTr) journal is being published jointly by the Euro-Asian Astronomical Society and Cambridge Scientific Publishers, The journal provides a forum for the rapid publication of material from all modern and classical fields of astronomy and astrophysics, as well as material concerned with astronomical instrumentation and related fundamental sciences. It includes both theoretical and experimental original research papers, short communications, review papers and conference reports.
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