论文标题
激光强度的非线性时空控制
Nonlinear spatiotemporal control of laser intensity
论文作者
论文摘要
对激光脉冲强度的时空控制有可能使或彻底改变广泛的基于激光的应用,这些应用程序目前遭受了常规光学元件提供的灵活性差。具体而言,这些光学器件将高强度的区域限制在雷利范围内,几乎无法控制峰强度的轨迹。在这里,我们引入了一种非线性技术,用于时空控制,即“自飞向焦点”,该技术会产生一个任意的轨迹强度峰,该峰值可以维持与焦距相当的距离。该技术结合了时间脉冲成型和介质的固有非线性,以自定义脉冲中每个时间切片的时间和位置。作为其实用程序的一个例子,模拟表明,自飞向焦点可以形成适合高级基于等离子体的加速器的高度均匀的仪表等离子体。
Spatiotemporal control over the intensity of a laser pulse has the potential to enable or revolutionize a wide range of laser-based applications that currently suffer from the poor flexibility offered by conventional optics. Specifically, these optics limit the region of high intensity to the Rayleigh range and provide little to no control over the trajectory of the peak intensity. Here, we introduce a nonlinear technique for spatiotemporal control, the "self-flying focus," that produces an arbitrary trajectory intensity peak that can be sustained for distances comparable to the focal length. The technique combines temporal pulse shaping and the inherent nonlinearity of a medium to customize the time and location at which each temporal slice within the pulse comes to its focus. As an example of its utility, simulations show that the self-flying focus can form a highly uniform, meter-scale plasma suitable for advanced plasma-based accelerators.