We theoretically demonstrate the feasibility of producing electron beam splitter using Kapitza-Dirac diffraction on bichromatic standing waves which are created by the fundamental frequency and the third harmonic. The relativistic electron in Bragg regime absorbs three photons with frequency of w and emits a photon with frequency of 3w, four-photon Kapitza-Dirac effect. In this four-photon Kapitza-Dirac effect distinct spin effects arise in different polarizations of the third harmonic laser beam. It is shown that the shape of Rabi oscillation between initial and scattered states is changed and finds two unequal peaks. In circular polarization for fundamental and third harmonic, despite Rabi oscillation, the spin down electron in 0.56 fs intervals maintains its momentum and spin. Also we present an electron spin filter with combination of a linearly polarized fundamental laser beam and a third harmonic with circular polarization that scatters the electron beam according to its spin state.
翻译:我们理论上证明利用基频率和第三波调产生的双色常态电波生成电子束分离器的可行性,在理论上,布拉格系统中相对电子以湿频率吸收三枚光子,以3w、4-photon Kapitza-Dirac的频率释放一个光子。在这个4-photon Kapitza-Dirac效应中,第三波热激光束的不同两极之间产生不同的旋转效应。这表明初始状态和分散状态之间的拉比振荡形状已经改变,并发现了两个不平等的峰值。在基调和第三波的循环两极化中,尽管拉比振动,每秒0.56英尺的旋转电流能保持其动力和旋转。此外,我们展示了一个电子旋转过滤器,结合了直线极化基本激光束和第三波极分化,将电子束根据其旋转状态散开。