首页> 外文期刊>Journal of Plasma Physics >Signature of gyro-phase drift
【24h】

Signature of gyro-phase drift

机译:陀螺相位漂移的特征

获取原文
获取原文并翻译 | 示例
           

摘要

Gyro-phase drift is a guiding center drift that is directly dependent on the charging rate limit of dust grains. The effect of introducing a gyro-phase-dependence on the grain charge leads to two orthogonal components of guiding-center drift. One component, referred to here as grad-q drift, results from the time-varying, gyro-phase angle dependent, in-situ-equilibrium grain charge, assuming that the grain charging is instantaneous. For this component, the grain is assumed to be always in its insitu-equilibrium charge state and this state gyro-synchronously varies with respect to the grain's average charge state. The other component, referred to here as the gyro-phase drift, arises from any non-instantaneous-charging-induced modification of the diamagnetic drift and points in the direction of -?R_(Ld) (where R_(Ld) is the grain gyro-radius), i.e. the direction associated with increasing magnitude of insitu-equilibrium charge state. For this component, the grain gyro-synchronously undercharges and overcharges with respect to its gyro-synchronously varying, insitu-equilibrium charge state. These characteristics are illustrated with a singleparticle code for predicting grain trajectory that demonstrates how gyro-phase drift magnitude and direction could be exploited, using an extended version of the presented model, as sensitive indicators of the charging time of dust grains because of the cumulative effect of the ever-changing charge state of a grain making repeated excursions in inhomogeneous plasma over many gyro-periods.
机译:陀螺相位漂移是一个指导中心漂移,直接取决于尘粒的带电率极限。对谷物电荷引入陀螺仪相位相关性的影响导致引导中心漂移的两个正交分量。假设谷物装料是瞬时的,一个因时变的陀螺相位角相关的原位平衡谷物装料会产生一个分量,此处称为grad-q漂移。对于该成分,假定晶粒始终处于其原位平衡电荷状态,并且该状态相对于晶粒的平均电荷状态陀螺同步变化。另一个分量,这里称为陀螺相位漂移,是由反磁漂移的任何非瞬时充电引起的变化引起的,并且指向-ΔR_(Ld)的方向(其中R_(Ld)是晶粒陀螺半径),即与原位平衡电荷态强度增加相关的方向。对于该组分,相对于其陀螺同步变化的原位平衡充电状态,谷物陀螺同步充电不足和过度充电。这些特性通过用于预测谷物轨迹的单粒子代码进行了说明,该代码演示了如何使用提出的模型的扩展版本,利用陀螺相漂移量和方向,因为累积效应而成为尘粒充电时间的敏感指标。的不断变化的电荷状态的变化,使得在许多陀螺周期内在不均匀的等离子体中反复发生偏移。

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