Lawrence Berkeley National Laboratory, 1 Cyclotron Road, California 94720, USA.
Phys Rev Lett. 2012 Dec 14;109(24):245003. doi: 10.1103/PhysRevLett.109.245003. Epub 2012 Dec 10.
The x-ray intensities made available by x-ray free electron lasers (FEL) open up new x-ray matter interaction channels not accessible with previous sources. We report here on the resonant generation of Kα emission, that is to say the production of copious Kα radiation by tuning the x-ray FEL pulse to photon energies below that of the K edge of a solid aluminum sample. The sequential absorption of multiple photons in the same atom during the 80 fs pulse, with photons creating L-shell holes and then one resonantly exciting a K-shell electron into one of these holes, opens up a channel for the Kα production, as well as the absorption of further photons. We demonstrate rich spectra of such channels, and investigate the emission produced by tuning the FEL energy to the K-L transitions of those highly charged ions that have transition energies below the K edge of the cold material. The spectra are sensitive to x-ray intensity dependent opacity effects, with ions containing L-shell holes readily reabsorbing the Kα radiation.
自由电子激光(FEL)产生的 X 射线强度开辟了新的 X 射线与物质相互作用的通道,这些通道是以前的源无法到达的。我们在这里报告了 Kα 发射的共振产生,也就是说,通过将 X 射线 FEL 脉冲调谐到低于固体铝样品 K 边的光子能量,产生大量的 Kα 辐射。在 80fs 脉冲中,同一个原子中多个光子的顺序吸收,其中光子产生 L 壳层空穴,然后一个共振地将 K 壳层电子激发到这些空穴之一中,为 Kα 产生以及进一步吸收光子开辟了一个通道。我们展示了这些通道的丰富光谱,并研究了通过将 FEL 能量调谐到那些过渡能量低于冷材料 K 边的高电荷离子的 K-L 跃迁来产生的发射。光谱对依赖于 X 射线强度的不透明度效应敏感,其中含有 L 壳层空穴的离子很容易重新吸收 Kα 辐射。