Libster-Hershko Ana, Trajtenberg-Mills Sivan, Arie Ady
Opt Lett. 2015 May 1;40(9):1944-7. doi: 10.1364/OL.40.001944.
In this Letter, we report the dynamic control of the spatial shape of the second harmonic (SH) beam generated in a nonlinear crystal, by controlling the phase of the input fundamental beam before entering the crystal. This method enables 2D beam shaping and does not require any special fabrication beforehand. We have shown in simulation and experiment that this is possible for both short and long crystals: for short crystals, we assume the transverse phase of the SH beam is doubled relative to the input phase of the fundamental beam; for longer crystals, genetic algorithms were used in order to solve the inverse phase problem, which generally does not have an analytical solution. The method we present enables us to dynamically shape a beam in a nonlinear process, using standard crystals and optical equipment, and without the need to use any optical element after the nonlinear crystal.
在本信函中,我们报告了通过在输入基波光束进入晶体之前控制其相位,来动态控制非线性晶体中产生的二次谐波(SH)光束的空间形状。该方法能够实现二维光束整形,且无需事先进行任何特殊制作。我们已通过模拟和实验表明,对于短晶体和长晶体这都是可行的:对于短晶体,我们假设SH光束的横向相位相对于基波光束的输入相位加倍;对于较长晶体,使用遗传算法来解决通常没有解析解的逆相位问题。我们提出的方法使我们能够在非线性过程中,使用标准晶体和光学设备动态地对光束进行整形,并且无需在非线性晶体之后使用任何光学元件。