We explain the rotational Doppler effect associated with light beams carrying with orbital angular momentum in left-handed materials (LHMs). We demonstrate that the rotational Doppler effect in LHMs is unreversed, which is significantly different from the linear Doppler effect. The physics underlying this intriguing effect is the combined contributions of negative phase velocity and inverse screw of wave-front. In the normal dispersion region, the rotational Doppler effect induces a upstream energy flow but a downstream momentum flow. In the anomalous dispersion region, however, the rotational Doppler effect produces a downstream energy flow but a upstream momentum flow. We theoretically predict that the rotational Doppler effect can induce a transfer of angular momentum of the LHM to orbital angular momentum of the beam.
翻译:我们解释左手材料(LHMs)中带有轨道角动势的光束的旋转多普勒效应。我们表明,LHMs的旋转多普勒效应与线性多普勒效应大不相同,这与线性多普勒效应大不相同。这种引人入胜效应的物理原理是负相速度和波端反螺旋的混合作用。在正常的分散区,旋转多普勒效应引来上游能量流动,但下游动力流动。但在异常分散区,旋转多普勒效应产生下游能源流动,但上游动力流动。我们理论上预测,旋转多普勒效应可促使LHM的角动力转移到波形的轨道角动力。