Kovalev Alexey A, Kotlyar Victor V, Kozlova Elena S, Butt Muhammad Ali
Laser Measurements Laboratory, Image Processing Systems Institute of the RAS-Branch of FSRC "Crystallography and Photonics" of the RAS, 151 Molodogvardeyskaya St., Samara 443001, Russia.
Technical Cybernetics Department, Samara National Research University, 34 Moskovskoe Shosse, Samara 443086, Russia.
Micromachines (Basel). 2022 Oct 11;13(10):1709. doi: 10.3390/mi13101709.
In optical computing machines, many parameters of light beams can be used as data carriers. If the data are carried by optical vortices, the information can be encoded by the vortex topological charge (TC). Thus, some optical mechanisms are needed for performing typical arithmetic operations with topological charges. Here, we investigate the superposition of a single-ringed (zero-radial-index) Laguerre-Gaussian (LG) beam with an off-axis Gaussian beam in the waist plane. Analytically, we derive at which polar angles intensity nulls can be located and define orders of the optical vortices born around these nulls. We also reveal which of the vortices contribute to the total TC of the superposition and which are compensated for by the opposite-sign vortices. If the LG beam has a TC of , TC of the superposition is analytically shown to equal [/2] or [/2] + 1, where [] means an integer part of the fractional number. Thus, we show that the integer division of the TC by two can be done by superposing the LG beam with an off-axis Gaussian beam. Potential application areas are in optical computing machines and optical data transmission.
在光学计算机中,光束的许多参数可用作数据载体。如果数据由光学涡旋携带,则信息可通过涡旋拓扑电荷(TC)进行编码。因此,需要一些光学机制来对拓扑电荷执行典型的算术运算。在此,我们研究了单环(零径向指数)拉盖尔 - 高斯(LG)光束与轴外高斯光束在束腰平面的叠加。通过分析,我们得出强度零点可位于哪些极角处,并定义围绕这些零点产生的光学涡旋的阶数。我们还揭示了哪些涡旋对叠加的总TC有贡献,以及哪些被相反符号的涡旋所补偿。如果LG光束的TC为 ,叠加的TC经分析显示等于[/2]或[/2] + 1,其中[]表示分数的整数部分。因此,我们表明通过将LG光束与轴外高斯光束叠加可实现TC的二等分整数除法。潜在应用领域包括光学计算机和光学数据传输。