Niu Kai, Zhao Shangdong, Liu Yu, Tao Shaohua, Wang Fuliang
Opt Express. 2022 Feb 14;30(4):5465-5472. doi: 10.1364/OE.448270.
We introduce a class of self-rotating beams whose intensity profile tends to self-rotate and self-bend in the free space propagation. The feature of the self-rotating beams is acceleration in the three-dimensional (3D) space. The acceleration dynamics of the self-rotating beams is controllable. Furthermore, multiple self-rotating beams can be generated by a combined diffractive optical element (DOE) simultaneously. Such a beam can be viewed as evolution of a vortex beam by changing the exponential constant of phase. We have generated this beam successfully in the experiment and observed the expected phenomenon, which is basically consistent with the result of the numerical simulation. Our results may provide new insight into the self-rotating beam and extend potential applications in optical imaging.
我们引入了一类自旋转光束,其强度分布在自由空间传播中倾向于自旋转和自弯曲。自旋转光束的特征是在三维(3D)空间中的加速。自旋转光束的加速动力学是可控的。此外,多个自旋转光束可以由组合衍射光学元件(DOE)同时产生。通过改变相位的指数常数,这样的光束可以被视为涡旋光束的演化。我们已在实验中成功产生了这种光束,并观察到了预期现象,这与数值模拟结果基本一致。我们的结果可能为自旋转光束提供新的见解,并扩展其在光学成像中的潜在应用。