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Ultrafast strong-field photoelectron emission from biased metal surfaces: exact solution to time-dependent Schrödinger Equation

机译:偏置金属表面的超快强场光电子发射:随时间变化的薛定ding方程的精确解

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摘要

Laser-driven ultrafast electron emission offers the possibility of manipulation and control of coherent electron motion in ultrashort spatiotemporal scales. Here, an analytical solution is constructed for the highly nonlinear electron emission from a dc biased metal surface illuminated by a single frequency laser, by solving the time-dependent Schrödinger equation exactly. The solution is valid for arbitrary combinations of dc electric field, laser electric field, laser frequency, metal work function and Fermi level. Various emission mechanisms, such as multiphoton absorption or emission, optical or dc field emission, are all included in this single formulation. The transition between different emission processes is analyzed in detail. The time-dependent emission current reveals that intense current modulation may be possible even with a low intensity laser, by merely increasing the applied dc bias. The results provide insights into the electron pulse generation and manipulation for many novel applications based on ultrafast laser-induced electron emission.
机译:激光驱动的超快电子发射提供了在超短时空尺度上操纵和控制相干电子运动的可能性。在这里,通过精确求解与时间有关的薛定er方程,构造了一种解析解决方案,用于从单频激光照射的直流偏置金属表面发出高度非线性的电子。该解决方案适用于直流电场,激光电场,激光频率,金属功函数和费米能级的任意组合。该单一配方中包括各种发射机制,例如多光子吸收或发射,光学或直流场发射。详细分析了不同排放过程之间的过渡。随时间变化的发射电流表明,即使是低强度的激光,也可以通过仅增加施加的直流偏置来进行强电流调制。结果为基于超快激光诱导的电子发射的许多新颖应用的电子脉冲产生和操纵提供了见识。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Peng Zhang; Y. Y. Lau;

  • 作者单位
  • 年(卷),期 -1(6),-1
  • 年度 -1
  • 页码 19894
  • 总页数 12
  • 原文格式 PDF
  • 正文语种
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