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Improvement of harmonic spectra from superposition of initial state driven by homogeneous and inhomogeneous combined field

机译:通过均匀和不均匀组合场驱动初始状态叠加的谐波光谱的提高

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A larger harmonic cutoff with a higher harmonic yield is a necessary requirement for producing intense ultrashort extreme ultraviolet (XUV) and X-ray sources. In this paper, we present a potential method to improve the harmonic cutoff and harmonic yield from the superposition of initial states in the He atom driven by the low-intensity homogeneous and inhomogeneous combined field. The results can be separated into two parts, that is, (i) the extension of harmonic cutoff via the optimization of three-color homogeneous and inhomogeneous field (covering the carrier envelope phase, delay time, intensity ratio, and inhomogeneous effect); and (ii) the enhancement of harmonic yield via the superposition of ground state and excited state as the initial state. Consequently, a water window harmonic plateau with an intensity enhancement of six orders of magnitude can be obtained. Moreover, the harmonic plateau is contributed by a single harmonic emission peak. Finally, through the Fourier transformation of some selected harmonics on the spectral continuum, a number of sub-50 as water window attosecond pulses with the intensity enhancement of six orders of magnitude can be obtained.
机译:具有较高谐波产量的较大谐波截止是产生强烈的超紫外(XUV)和X射线源的必要要求。在本文中,我们提出了一种潜在的方法,以改善由低强度均匀和非均匀组合领域驱动的初始状态的初始状态的谐振截止和谐波产量。结果可以分为两部分,即(i)通过优化三种均匀和不均匀场的延伸谐波截止(覆盖载流子相位,延迟时间,强度比和不均匀效应); (ii)通过地面状态的叠加和激发态作为初始状态的提高谐波产量。因此,可以获得具有强度增强的水窗谐波高原,可以提高六个数量级。此外,谐波平台由单个谐波发射峰进行贡献。最后,通过在光谱连续体上的一些选定谐波的傅里叶变换,可以获得与水窗的镜像脉冲具有六个级的强度增强的多个子50。

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