论文标题

内螺旋体的热力学

Thermodynamics of the inner heliosheath

论文作者

Livadiotis, G., McComas, D. J., Funsten, H. O., Schwadron, N. A., Szalay, J. R., Zirnstein, E.

论文摘要

我们得出了内heliosheath(IHS)中质子温度的年度Skymap,并在2009年至2016年的星际边界探索者观察结果中跟踪它们的时间演变。还确定的其他相关热力学参数是密度,kappa,即表征KAPPA分布,温度速率,多环反应指数和熵的参数。我们利用Kappa分布的理论及其与多层的联系,以(i)表达一种新的多型量π,该量沿流动和密度可能会变化的流线保持不变,(ii)以π不变和KAPPA和(iii)的速率来互相互动的质子通量,以及(iii),以及(iii),以及(iii)的关系。 π。我们发现以下热力学特征:(1)温度天空图和直方图在2012年转移到最低值,并且在2015年最高; (2)温度与密度负相关,反映了下异点的多质性行为; (3)温度与Kappa正相关,揭示了负责产生Kappa分布的机制的特征; (4)IHS中的过程是偏向同位趋势,与先前发表的结果一致; (5)Kappa与多面年指数之间的线性关系,揭示了粒子势能的特征; (6)熵与多面年指数正相关,与基本理论一致,即熵朝向等温态增加,在该理论中,Kappa分布降低到Maxwell Boltzmann描述。

We derive annual skymaps of the proton temperature in the inner heliosheath (IHS), and track their temporal evolution over the years from 2009 to 2016 of Interstellar Boundary Explorer observations. Other associated thermodynamic parameters also determined are the density, kappa, that is, the parameter that characterizes kappa distributions, temperature rate, polytropic index, and entropy. We exploit the theory of kappa distributions and their connection with polytropes, to (i) express a new polytropic quantity Π that remains invariant along streamlines where temperature and density may vary, (ii) parameterize the proton flux in terms of the Π invariant and kappa, and (iii) derive the temperature and density, respectively, from the slope and intercept of the linear relationship between kappa and logarithm of Π. We find the following thermodynamic characteristics: (1) Temperature sky-maps and histograms shifted to their lowest values in 2012 and their highest in 2015; (2) Temperature negatively correlated with density, reflecting the subisothermal polytropic behavior; (3) Temperature positively correlated with kappa, revealing characteristics of the mechanism responsible for generating kappa distributions; (4) Processes in IHS are sub-isothermal tending toward isobaric, consistent with previously published results; (5) Linear relationship between kappa and polytropic indices, revealing characteristics of the particle potential energy; and (6) Entropy positively correlated with polytropic index, aligned with the underlying theory that entropy increases towards the isothermal state where the kappa distribution reduces to the Maxwell Boltzmann description.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源