论文标题

随机不均匀等离子体中的谐波无线电发射

Harmonic radio emission in randomly inhomogeneous plasma

论文作者

Tkachenko, Anna, Krasnoselskikh, Vladimir, Voshchepynets, Andrii

论文摘要

在目前的论文中,我们描述了III型太阳能无线电爆发的谐波发射产生的理论模型。我们的研究的目的是充分考虑到通过在太阳能风的随机不均匀等离子体中的Langmuir Wave的非线性耦合($ L+L+L+L+l^{'} \ rightarrow t $)中,通过非元素不均匀等离子体中的Langmuir Wave的非线性耦合来充分考虑到发电的最有效的物理过程。我们重新审查了准二均血浆中主要产生和背面的Langmuir波的结合机制。此外,我们提出并研究了另一种机制,该机制仅在强烈的不均匀等离子体中产生谐波发射:在反射点的近距离附近,在具有增强的等离子体密度(团块)的局部局部区域内的非线性耦合和反射的langmuir波。两种机制都意味着血浆中存在强密度波动。我们使用梁血压相互作用的概率模型的结果,并评估从Langmuir波到谐波发射的能量转移的效率。我们推断出,准等离子体产生的谐波排放比以前的研究中发现的要强大。 Langmuir波转换为电磁谐波发射的效率预计将在大型血浆中运行的机制在较大的地球距离距离上更高,而在小型HeliePentric距离处则是在不受度人种中运行的一种。准合作等离子体中的发射强度的评估也可以用于II型太阳无线电爆发。在两种情况下,辐射模式都是四极了,我们表明,密度团块的发射可能有效地有助于谐波无线电发射的可见性。

In present paper, we describe a theoretical model of generation of harmonic emissions of type III solar radio bursts. The goal of our study is to fully take into account the most efficient physical processes participating in generation of harmonic electromagnetic emission via nonlinear coupling of Langmuir waves in randomly inhomogeneous plasma of solar wind ($l+l^{'} \rightarrow t$). We revisit the conventional mechanism of coalescence of primarily generated and back-scattered Langmuir waves in quasihomogeneous plasma. Additionally, we propose and investigate another mechanism that generates the harmonic emission only in a strongly inhomogeneous plasma: the nonlinear coupling of incident and reflected Langmuir waves inside localized regions with enhanced plasma density (clumps), in the close vicinity of the reflection point. Both mechanisms imply the presence of strong density fluctuations in plasma. We use the results of a probabilistic model of beam-plasma interaction and evaluate the efficiency of energy transfer from Langmuir waves to harmonic emission. We infer that harmonic emissions from a quasihomogeneous plasma are significantly more intense than found in previous studies. The efficiency of Langmuir waves conversion into electromagnetic harmonic emission is expected to be higher at large heliospheric distances for the mechanism operating in quasihomogeneous plasma, and at small heliocentric distances - for the one operating in inhomogeneous. The evaluation of emission intensity in quasihomogeneous plasma may also be applied for type II solar radio bursts. The radiation pattern in both cases is quadrupolar, and we show that emission from density clumps may efficiently contribute to the visibility of harmonic radio emission.

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