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High-order harmonic generation in a driven two-level atom: Periodic level crossings and three-step processes - art. no. 013402

机译:受驱动的两能级原子中的高次谐波生成:周期性能级穿越和三步过程-艺术。没有。 013402

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摘要

We investigate high-order harmonic generation in closed systems using the two-level atom as a simplified model. By means of a windowed Fourier transform of the time-dependent dipole acceleration, we extract the main contributions to this process within a cycle of the driving field. We show that the patterns obtained can be understood by establishing a parallel between the two-level atom and the three-step model. In both models, high-order harmonic generation is a consequence of a three-step process, which involves either the continuum and the ground state, or the adiabatic states of the two-level Hamiltonian. The knowledge of this physical mechanism allows us to manipulate the adiabatic states, and consequently the harmonic spectra, by means of a bichromatic driving field. Furthermore, using scaling laws, we establish sharp criteria for the invariance of the physical quantities involved. Consequently, our results can be extended to a broader parameter range, as, for instance, those characteristic of solid-state systems in strong fields. [References: 78]
机译:我们研究了使用两级原子作为简化模型的封闭系统中高次谐波的产生。通过对时间相关的偶极子加速度进行加窗傅立叶变换,我们在驱动场的周期内提取了对该过程的主要贡献。我们表明,可以通过在两级原子和三步模型之间建立平行关系来理解获得的模式。在这两个模型中,高次谐波的产生都是三步过程的结果,该过程涉及连续态和基态,或者是两级哈密顿量的绝热态。这种物理机制的知识使我们能够通过双色驱动场来控制绝热状态,从而控制谐波频谱。此外,使用缩放定律,我们为涉及的物理量的不变性建立了严格的标准。因此,我们的结果可以扩展到更宽的参数范围,例如强场中固态系统的特征。 [参考:78]

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