论文标题

在量子点分子中使用轨道角动量操纵和交换光

Manipulation and exchange of Light with Orbital Angular Momentum in Quantum Dot Molecules

论文作者

Mahdavi, Mahboubeh, Sabegh, Zahra Amini, Mohammadi, Mohammad, Hamedi, Hamid Reza, Mahmoudi, Mohammad

论文摘要

我们研究携带轨道角动量(OAM)与结构不对称量子点分子的激光脉冲的相互作用,这些分子的特征是四个能级。我们演示了点间隧道如何在不同频率之间赋予光学涡旋的交换。我们考虑弱探针梁具有光学涡流,因此中心的强度为零的情况。隧穿耦合的存在会产生与入射涡流束相同的涡度的额外弱激光束。我们分析了将有效传输到生成的光束的初始光束的涡流条件。然后研究强控制束也是OAM模式的情况,研究了具有具有方位角和径向指数的oaM状态的Laguerre-Gaussian(LG)梁的传播。结果表明,在OAM交换过程中,OAM状态的保护总是满足。然而,观察到异常情况,其中径向指数诱导生成的束的某些强度模式,该图案与纯LG梁束的不同。提供了分析溶液来阐明径向指数对OAM束传播特性引起的这种影响。当叠加两个最初呈弱的OAM模式时,可以观察到所得的光学涡旋在光轴上移动,随着光的传播,在中心周围形成了一种“星座”。这种复合脉冲的轴上的移位是由于由外部电压控制的点间隧道的影响。光学角度运动可能会在适合量子技术的固体系统的研究中增加新的自由度。

We study the interaction of laser pulses carrying orbital angular momentum (OAM) with structural asymmetry quantum dot molecules characterized by four energy levels. We demonstrate how the inter-dot tunneling endows exchange of optical vortices between different frequencies. We consider a case where a weak probe beam has an optical vortex and thus has a zero intensity at the center. The presence of tunneling coupling generates an additional weak laser beam with the same vorticity as that of the incident vortex beam. We analyze conditions for the vortex of the initial beam to be transferred efficiently to the generated beam. The propagation of Laguerre-Gaussian (LG) beams possessing OAM states characterized by both azimuthal and radial indices is then investigated for the case where the strong control beam is also an OAM mode. It is shown that the conservation of OAM states is always satisfied over the OAM exchange process. Yet, an abnormal case is observed in which the radial index induces some intensity patterns of the generated beam which differs from a pure LG beam of incident beams. Analytical solutions are provided to elucidate such effects induced by radial indices on propagation characteristics of OAM beams. When superimposing two initially present weak OAM modes, it is observed that the resulting optical vortices move about the beam axis as the light propagates, forming a sort of "constellation" around the center. The shift in axis of such a composite pulses is due to the effect of inter-dot tunneling which is controlled by an external electric voltage. The optical angular momenta may add a new degree of freedom in the study of solid systems suitable for quantum technologies.

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