论文标题
基于时空波前形状的超级分辨成像
Super-resolved imaging based on spatiotemporal wavefront shaping
论文作者
论文摘要
提出了一种改善共聚焦扫描成像性能的新方法。我们通过声波实验证明了它的可行性。它依赖于使用时间维度编码空间信息的新方法。通过移动用于沿圆形路径的对象进行伤害的发射极,我们创建了一个时间调制的波场。由于该问题的圆柱形对称性及其时间周期性,因此时空输入场可以分解为对应于不同空间涡流或拓扑指控的谐波。获得也是旋转的接收器的后反射波,获得具有不同点扩散函数(PSF)的同一对象的多个图像。与标准共聚焦配置相比,分辨率不仅可以提高分辨率,而且信息的积累还允许构建图像击败衍射极限。该方法的拓扑鲁棒性有望在现实生活条件下表现良好。
A novel approach to improving the performances of confocal scanning imaging is proposed. We experimentally demonstrate its feasibility using acoustic waves. It relies on a new way to encode spatial information using the temporal dimension. By moving an emitter, used to insonify an object, along a circular path, we create a temporally modulated wavefield. Due to the cylindrical symmetry of the problem and its temporal periodicity, the spatiotemporal input field can be decomposed into harmonics corresponding to different spatial vortices, or topological charges. Acquiring the back-reflected waves with receivers which are also rotating, multiple images of the same object with different Point Spread Functions (PSFs) are obtained. Not only is the resolution improved compared to a standard confocal configuration, but the accumulation of information also allows building images beating the diffraction limit. The topological robustness of the approach promises good performances in real life conditions.