首页> 外文会议> >Modified Jeans Instability for Dusty Plasmas: Linear Theory
【24h】

Modified Jeans Instability for Dusty Plasmas: Linear Theory

机译:尘土等离子体的改良牛仔裤不稳定性:线性理论

获取原文

摘要

Summary form only given. In the simplest case, a dust grain immersed in a plasma is negatively charged due to particle collection, owing to the fact that electrons are typically more mobile than ions and that electron emission from the grain is not taken into account. In this scenario, known as primary charging, the shielding potential is monotonic and well approximated by the Debye-Huckel potential when the grain radius is small compared to the linearized Debye length. However, the scenario described above changes significantly when other processes are taken into account, such as for instance electron emission from the grain, due to thermionic, photoelectric or secondary emission. In this case, Delzanno et al. showed that the shielding potential is no longer monotonic but can present an attractive potential well (reminiscent of the Lennard-Jones potential for the attraction among atoms). The presence of a potential well in the shielding potential has important consequences as it can lead to attractive forces on other grains even if they have the same sign of charge. Moreover, this mechanism can be particularly important for dust aggregation in astrophysical systems. In the astrophysical context, the simplest theory of aggregation of masses in space is the Jeans instability, where a uniform distribution of masses can collapse as a result of a perturbation with wavelength greater than the Jeans wavelength. In this study, we will present the kinetic theory of the modified Jeans instability, where particles interact through the gravitational and electrostatic forces. The latter, however, is not modeled with the Coulomb or Debye-Huckel potential but with the potential well discovered by G.L. Delzanno et al. (2004 and 2005). We will show how the Lennard-Jones like shielding potential can indeed exist for carbon dust grains which emit photoelectrons in response to a UV field. Furthermore, the well acts broadening the spectrum of gravitationally unstable modes and enhance -their growth rates, even with respect to the pure gravitational case. On the other hand, a pure Debye-Huckel potential always acts to stabilize the system
机译:仅提供摘要表格。在最简单的情况下,由于电子通常比离子更具迁移性,而且没有考虑到从颗粒中释放出的电子,因此浸没在等离子体中的尘埃颗粒由于颗粒收集而带负电。在这种情况下,被称为一次充电,当晶粒半径小于线性化的德拜长度时,屏蔽电位是单调的,并且可以被德拜-哈克尔电位很好地近似。然而,当考虑到其他过程时,例如由于热离子,光电或二次发射而导致的诸如从谷物中的电子发射时,上述情形发生了显着变化。在这种情况下,Delzanno等人。结果表明,屏蔽势不再是单调的,而是可以很好地呈现出吸引势(让人联想到Lennard-Jones势于原子间的吸引)。屏蔽电势中存在电势阱具有重要的后果,因为即使它们具有相同的电荷迹象,也可能导致对其他晶粒的吸引力。此外,这种机制对于天体系统中的尘埃聚集特别重要。在天体物理学的背景下,最简单的质量团聚在空间中的理论是让斯不稳定性,在这种情况下,质量的均匀分布可能由于波长大于让恩斯波长的扰动而崩溃。在这项研究中,我们将介绍修改后​​的Jeans不稳定性的动力学理论,其中颗粒通过重力和静电力相互作用。但是,后者不是用库仑或Debye-Huckel势建模的,而是由G.L. Delzanno等人很好地发现的势建模的。 (2004年和2005年)。我们将展示Lennard-Jones这样的屏蔽电位如何确实存在于响应于UV场而发出光电子的碳尘埃颗粒中。此外,该井的作用扩大了重力不稳定模式的范围并提高了它们的生长速度,即使相对于纯重力情况也是如此。另一方面,纯Debye-Huckel势能始终起到稳定系统的作用

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号