Kalmykov S, Yi S A, Khudik V, Shvets G
The Department of Physics and Institute for Fusion Studies, The University of Texas at Austin, Austin, Texas 78712, USA.
Phys Rev Lett. 2009 Sep 25;103(13):135004. doi: 10.1103/PhysRevLett.103.135004.
The blowout (or bubble) regime of laser wakefield acceleration is promising for generating monochromatic high-energy electron beams out of low-density plasmas. It is shown analytically and by particle-in-cell simulations that self-injection of the background plasma electrons into the quasistatic plasma bubble can be caused by slow temporal expansion of the bubble. Sufficient criteria for the electron trapping and bubble's expansion rate are derived using a semianalytic nonstationary Hamiltonian theory. It is further shown that the combination of bubble's expansion and contraction results in monoenergetic electron beams.
激光尾场加速的爆轰(或气泡)机制有望从低密度等离子体中产生单色高能电子束。通过解析和粒子模拟表明,气泡的缓慢时间膨胀可导致背景等离子体电子自注入准静态等离子体气泡。利用半解析非定常哈密顿理论推导了电子俘获和气泡膨胀率的充分判据。进一步表明,气泡的膨胀和收缩相结合会产生单能电子束。