LCLS, SLAC National Accelerator Laboratory, Menlo Park, California 94025, USA.
SSRL, SLAC National Accelerator Laboratory, Menlo Park, California 94025, USA.
Phys Rev Lett. 2018 Mar 30;120(13):133203. doi: 10.1103/PhysRevLett.120.133203.
We report the observation and analysis of the gain curve of amplified Kα x-ray emission from solutions of Mn(II) and Mn(VII) complexes using an x-ray free electron laser to create the 1s core-hole population inversion. We find spectra at amplification levels extending over 4 orders of magnitude until saturation. We observe bandwidths below the Mn 1s core-hole lifetime broadening in the onset of the stimulated emission. In the exponential amplification regime the resolution corrected spectral width of ∼1.7 eV FWHM is constant over 3 orders of magnitude, pointing to the buildup of transform limited pulses of ∼1 fs duration. Driving the amplification into saturation leads to broadening and a shift of the line. Importantly, the chemical sensitivity of the stimulated x-ray emission to the Mn oxidation state is preserved at power densities of ∼10^{20} W/cm^{2} for the incoming x-ray pulses. Differences in signal sensitivity and spectral information compared to conventional (spontaneous) x-ray emission spectroscopy are discussed. Our findings build a baseline for nonlinear x-ray spectroscopy for a wide range of transition metal complexes in inorganic chemistry, catalysis, and materials science.
我们报告了使用 X 射线自由电子激光观察和分析 Mn(II)和 Mn(VII)配合物溶液中放大的 Kα X 射线发射增益曲线,以产生 1s 芯空穴布居反转。我们发现,在放大水平上的光谱扩展超过 4 个数量级,直到饱和。我们在受激发射的起始处观察到带宽低于 Mn 1s 芯空穴寿命展宽。在指数放大区域,分辨率校正的光谱宽度约为 1.7 eV FWHM 在 3 个数量级上保持不变,表明形成了持续时间约为 1 fs 的变换限制脉冲。将放大驱动到饱和会导致谱线展宽和位移。重要的是,在输入 X 射线脉冲的功率密度约为 10^{20} W/cm^{2}时,受激 X 射线发射对 Mn 氧化态的化学灵敏度保持不变。与传统(自发)X 射线发射光谱相比,讨论了信号灵敏度和光谱信息的差异。我们的发现为无机化学、催化和材料科学中广泛的过渡金属配合物的非线性 X 射线光谱学建立了一个基准。