论文标题

扩展具有指数衰减密度分布的超速中性等离子体

Expansion of Ultracold Neutral Plasmas with Exponentially Decaying Density Distributions

论文作者

Warrens, MacKenzie K., Gorman, Grant M., Bradshaw, Stephen J., Killian, Thomas C.

论文摘要

我们介绍了一项研究的研究,该研究的膨胀超速中性血浆(UCNP)具有初始密度分布,该密度分布在空间中呈指数衰减,这是通过光离子化原子从四极杆(或双尖尖)磁性陷阱释放后不久产生的。在等离子体大小和速度的演化中,特征性离子声学时间尺度很明显,表明动力学通过准中性等离子体的流体动力扩张模型很好地描述。然而,对于低血浆密度和高初始电子温度,中央密度峰附近的过量离子动能表明早期的局部非中性性显着。将观察结果与具有初始高斯密度分布的UCNP理解的自相似相似的扩张进行了比较,并且类似的缩放定律描述了两种情况下血浆大小的演变。

We present a study of the expansion of an ultracold neutral plasma (UCNP) with an initial density distribution that decays exponentially in space, created by photoionizing atoms shortly after their release from a quadrupole (or biconic cusp) magnetic trap. A characteristic ion acoustic timescale is evident in the evolution of the plasma size and velocity, indicating the dynamics are reasonably well described by a model of hydrodynamic expansion of a quasi-neutral plasma. However, for low plasma density and high initial electron temperature, excess ion kinetic energy in the vicinity of the central density peak suggests significant local non-neutrality at early times. Observations are compared to the well-understood self-similar expansion of an UCNP with an initial Gaussian density distribution, and a similar scaling law describes the evolution of plasma size for both cases.

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