Sun Baoyin, Huang Zhaofeng, Zhu Xinlei, Wu Dan, Chen Yahong, Wang Fei, Cai Yangjian, Korotkova Olga
Opt Express. 2020 Mar 2;28(5):7182-7196. doi: 10.1364/OE.388507.
A stationary beam forming an Airy-like spectral density in the far field is analyzed theoretically and experimentally. The Schell-model source that radiates such a beam is an extended version of a recently introduced source [O. Korotkova, et al., Opt. Lett.43, 4727 (2018)10.1364/OL.43.004727; X. Chen, et al., Opt. Lett.44, 2470 (2019)10.1364/OL.44.002470, in 1D and 2D, respectively]. We show, in particular, that the source degree of coherence, being the fourth-order root of a Lorentz-Gaussian function and having linear and cubic phase terms, may be either obtained from the Fourier transform of the far-field Airy-like pattern or at the source using the sliding function method. The spectral density of the beam is analyzed on propagation through paraxial ABCD optical systems, on the basis of the generalized Collins integral, by means of the derived closed-form expression. We show that the distribution of the side lobes in the Airy beam spectral density can be controlled by the parameters of the source degree of coherence. Further, an experiment involving a spatial light modulator (SLM) is carried out for generation of such a beam. We experimentally measure the complex degree of coherence of the source and observe the gradual formation of a high-quality Airy-like spectral density towards the far field. In addition, the trajectory of the intensity maxima of the beam after a thin lens is studied both theoretically and experimentally. The random counterpart of the classic, deterministic Airy beam may find applications in directed energy, imaging, beam shaping, and optical trapping.
对在远场形成类似艾里光谱密度的固定光束进行了理论和实验分析。辐射这种光束的谢尔模型源是最近引入的源的扩展版本[O. Korotkova等人,《光学快报》43, 4727 (2018)10.1364/OL.43.004727;X. Chen等人,《光学快报》44, 2470 (2019)10.1364/OL.44.002470,分别为一维和二维情况]。我们特别表明,作为洛伦兹 - 高斯函数的四次方根且具有线性和立方相位项的源相干度,既可以从远场类似艾里图案的傅里叶变换中获得,也可以在源处使用滑动函数法获得。基于广义柯林斯积分,借助推导得到的确切表达式,分析了光束在傍轴ABCD光学系统中传播时的光谱密度。我们表明,艾里光束光谱密度中的旁瓣分布可以通过源相干度的参数来控制。此外,进行了一个涉及空间光调制器(SLM)的实验来产生这样的光束。我们通过实验测量了源的复相干度,并观察到在远场逐渐形成高质量的类似艾里光谱密度。另外,从理论和实验两方面研究了薄透镜后光束强度最大值的轨迹。经典确定性艾里光束的随机对应物可能在定向能量、成像、光束整形和光学捕获等方面找到应用。