Kotlyar Victor, Kovalev Alexey, Porfirev Alexey, Kozlova Elena
Opt Lett. 2019 Aug 1;44(15):3673-3676. doi: 10.1364/OL.44.003673.
Here we obtain a simple formula for the relative total orbital angular momentum (OAM) of a paraxial light beam with arbitrary rotationally symmetric complex amplitude, passed through an off-axis spiral phase plate (SPP). The formula shows that the OAM is zero if the incident light is bounded by a diaphragm, and the SPP center is outside it. Another consequence of the obtained formula is that if the incident light is limited by an annular diaphragm then the full angular momentum is the same, regardless of the position of the SPP center inside the shaded circle of the annular diaphragm. This means that it is more appropriate to illuminate the SPP by beams with an annular intensity distribution because, in this case, the inaccurate alignment of the SPP center and the center of the annular intensity distribution do not affect the total OAM of the beam. In addition, we obtain a formula for the OAM density of such a light beam in the initial plane. The experimentally measured OAM is in good agreement with that calculated by the obtained formula.
在这里,我们得到了一个简单的公式,用于计算具有任意旋转对称复振幅的傍轴光束通过离轴螺旋相位板(SPP)后的相对总轨道角动量(OAM)。该公式表明,如果入射光由光阑限制,且SPP中心在其外部,则OAM为零。所得公式的另一个结果是,如果入射光由环形光阑限制,那么无论SPP中心在环形光阑阴影圆内的位置如何,总角动量都是相同的。这意味着用具有环形强度分布的光束照射SPP更合适,因为在这种情况下,SPP中心与环形强度分布中心的不准确对准不会影响光束的总OAM。此外,我们还得到了这种光束在初始平面内的OAM密度公式。实验测量的OAM与通过所得公式计算的结果吻合良好。