Reiten M T, McClatchey K, Grischkowsky D, Cheville R A
Opt Lett. 2001 Dec 1;26(23):1900-2. doi: 10.1364/ol.26.001900.
We present spatially resolved measurements of the electric field of terahertz pulses undergoing optical tunneling that show strong pulse reshaping in both time and space. This reshaping is shown to be a result of frequency and incidence-angle filtering of the complex amplitude of the plane-wave basis set that makes up the pulse. This filtering leads to spreading of the pulse in the time and space dimensions, as expected from linear dispersion theory. Measurement of the pulse shape after transmission through an optical tunneling barrier permits direct determination of the complex system transfer function in two dimensions. The transfer function, measured over both thin and thick barrier limits, contains a complete description of the tunneling barrier system from which the phase and loss times can be directly determined.
我们展示了对经历光学隧穿的太赫兹脉冲电场的空间分辨测量结果,这些结果表明在时间和空间上都存在强烈的脉冲重塑。这种重塑被证明是构成脉冲的平面波基集复振幅的频率和入射角滤波的结果。正如线性色散理论所预期的那样,这种滤波导致脉冲在时间和空间维度上的展宽。通过光学隧穿势垒传输后的脉冲形状测量允许直接确定二维复系统传递函数。在薄势垒和厚势垒极限下测量的传递函数包含了隧穿势垒系统的完整描述,从中可以直接确定相位和损耗时间。