论文标题

一种新的物理机制,用于与相位震动的光场中原子电离发作

A new physical mechanism for the onset of atomic ionization in an optical field with jolts of phase

论文作者

Shneider, M. N., Semak, V. V.

论文摘要

一个理论模型,描述了在低强度电磁波(光或激光束)中具有量子能量低于单个光子电离所需的量子能量的新机制和分子电离的新机制。所提出的物理机制的本质是每次电磁场震动的相位时发生的结合电子能量的逐步增益。只要有足够数量的相位震动,电子振荡能的台阶总和可以使结合电子的总能量超出电离电位。

A theoretical model that describes a new mechanism of atomic and molecular ionization in a low intensity electro-magnetic wave (light or laser beam) with the energy of quanta that is lower than required for a single photon ionization is presented. The essence of the proposed physical mechanism is the step-like gain of energy of a bound electron that occurs every time the phase of the electro-magnetic field jolts. Providing there is sufficiently large number of the phase jolts, the summation of the step increases of the electron oscillation energy can render the total energy of the bound electron such that it exceeds the ionization potential.

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