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Bright circularly polarized soft X-ray high harmonics for X-ray magnetic circular dichroism

机译:明亮的圆偏振软X射线高谐波用于X射线磁性圆二色性

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摘要

We demonstrate, to our knowledge, the first bright circularly polarized high-harmonic beams in the soft X-ray region of the electromagnetic spectrum, and use them to implement X-ray magnetic circular dichroism measurements in a tabletop-scale setup. Using counterrotating circularly polarized laser fields at 1.3 and 0.79 µm, we generate circularly polarized harmonics with photon energies exceeding 160 eV. The harmonic spectra emerge as a sequence of closely spaced pairs of left and right circularly polarized peaks, with energies determined by conservation of energy and spin angular momentum. We explain the single-atom and macroscopic physics by identifying the dominant electron quantum trajectories and optimal phase-matching conditions. The first advanced phase-matched propagation simulations for circularly polarized harmonics reveal the influence of the finite phase-matching temporal window on the spectrum, as well as the unique polarization-shaped attosecond pulse train. Finally, we use, to our knowledge, the first tabletop X-ray magnetic circular dichroism measurements at the N4,5 absorption edges of Gd to validate the high degree of circularity, brightness, and stability of this light source. These results demonstrate the feasibility of manipulating the polarization, spectrum, and temporal shape of high harmonics in the soft X-ray region by manipulating the driving laser waveform.
机译:据我们所知,我们在电磁频谱的软X射线区域展示了第一批明亮的圆偏振高谐波光束,并使用它们在桌面规模的装置中实现了X射线磁性圆二色性测量。使用1.3和0.79 µm的反向旋转圆偏振激光场,我们生成光子能量超过160 eV的圆偏振谐波。谐波频谱以左右对圆极化峰的紧密排列对的形式出现,其能量由能量守恒和自旋角动量确定。我们通过确定主要的电子量子轨迹和最佳相位匹配条件来解释单原子和宏观物理学。圆极化谐波的第一个高级相位匹配传播模拟揭示了有限相位匹配时间窗口对频谱的影响,以及独特的极化形状的阿秒脉冲序列。最后,据我们所知,在Gd的N4,5吸收边缘使用了首次桌面X射线磁性圆二色性测量,以验证该光源的高度圆度,亮度和稳定性。这些结果证明了通过操纵驱动激光波形来操纵软X射线区域中高谐波的偏振,光谱和时间形状的可行性。

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