论文标题
在顺序两局几何形状中的attosent瞬态反射光谱的新型光束线
Novel beamline for attosecond transient reflection spectroscopy in a sequential two-foci geometry
论文作者
论文摘要
我们提供了一种具有较高紫外线(XUV)式泵的创新光束线(XUV) - 泵探针反射光谱,并具有ATTSOND时间分辨率的固体。该设置使用了积极稳定的干涉仪,在该干涉仪中,Attosond脉冲序列或孤立的Attosond脉冲是由高级谐波产生产生的。共线重组后,曲线脉冲和飞秒IR脉冲通过环形镜进行两次聚焦,从而给出了两个空间分离的相互作用区域。在第一个区域,气体目标与飞行时间光谱仪的组合可以实现ATTSOCEND光学光谱实验。在第二个焦点区域中,XUV反射仪用于Attosecond瞬态反射光谱(ATRS)实验。由于可以同时执行这两种测量值,因此可以实现精确的泵浦延迟校准,从而为固体上的新型AttoSeND实验打开了可能性。光束线的成功运行是通过分离的Attosond脉冲的产生和表征,SIO2的绝对反射率的测量以及同时在GE中进行光发射/ATR来证明的。
We present an innovative beamline for extreme ultraviolet (XUV)-infrared (IR) pump-probe reflection spectroscopy in solids with attosecond temporal resolution. The setup uses an actively stabilized interferometer, where attosecond pulse trains or isolated attosecond pulses are produced by high-order harmonic generation in gases. After collinear recombination, the attosecond XUV pulses and the femtosecond IR pulses are focused twice in sequence by toroidal mirrors, giving two spatially separated interaction regions. In the first region, the combination of a gas target with a time-of-flight spectrometer allows for attosecond photoelectron spectroscopy experiments. In the second focal region, an XUV reflectometer is used for attosecond transient reflection spectroscopy (ATRS) experiments. Since the two measurements can be performed simultaneously, precise pump-probe delay calibration can be achieved, thus opening the possibility for a new class of attosecond experiments on solids. Successful operation of the beamline is demonstrated by the generation and characterization of isolated attosecond pulses, the measurement of the absolute reflectivity of SiO2, and by performing simultaneous photoemission/ATRS in Ge.