SLAC National Accelerator Laboratory, Menlo Park, CA, USA.
Department of Physics, Stanford University, Stanford, CA, USA.
Science. 2022 Jan 21;375(6578):285-290. doi: 10.1126/science.abj2096. Epub 2022 Jan 6.
In quantum systems, coherent superpositions of electronic states evolve on ultrafast time scales (few femtoseconds to attoseconds; 1 attosecond = 0.001 femtoseconds = 10 seconds), leading to a time-dependent charge density. Here we performed time-resolved measurements using attosecond soft x-ray pulses produced by a free-electron laser, to track the evolution of a coherent core-hole excitation in nitric oxide. Using an additional circularly polarized infrared laser pulse, we created a clock to time-resolve the electron dynamics and demonstrated control of the coherent electron motion by tuning the photon energy of the x-ray pulse. Core-excited states offer a fundamental test bed for studying coherent electron dynamics in highly excited and strongly correlated matter.
在量子系统中,电子态的相干叠加在超快时间尺度上(飞秒到阿秒;1 阿秒=0.001 飞秒=10 秒)演化,导致电荷密度随时间变化。在这里,我们使用自由电子激光产生的阿秒软 X 射线脉冲进行了时间分辨测量,以跟踪一氧化氮中相干芯空激发的演化。通过附加的圆偏振红外激光脉冲,我们创建了一个时钟来时间分辨电子动力学,并通过调谐 X 射线脉冲的光子能量证明了对相干电子运动的控制。芯激发态为研究高度激发和强关联物质中的相干电子动力学提供了一个基本的测试平台。