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New configurations in parametric down conversion for generating light with orbital angular momentum

机译:参数下变换的新配置,用于产生具有轨道角动量的光

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摘要

The OAM of light provides a new resource to explore quantum physics in a d-dimensional Hilbert space, beyond the two dimensional Hilbert space generated by the polarization state of the photons. The implementation of such a d-dimensional quantum channel requires the generation of arbitrary engineered entangled states, thus controlling the OAM of the entangled photons is of paramount importance for many applications. Here we address the orbital angular momentum, i.e. the spatial shape, of photons generated in SPDC in non collinear geometries, when the interacting waves can exhibit Poynting vector walk off. The spatial shape depends on the interplay between the state ellipticity caused by the nonlinear geometry, and the Poynting vector walk off. The importance of both effects is dictated by the relationship between three characteristics lengths: the length of the nonlinear crystal, the walk off length and the non collinear length. The effects described here are relevant to current experiments, especially for the implementation of quantum information protocols based on spatially encoded information. Finally, the consideration of new geometries for SPDC, more specifically, highly non collinear configurations, will lead us to the discussion of the relationship between the OAM of the classical beam that pumps the nonlinear crystal, and the quantum OAM of the down converted photons. Regarding experimental measurements related to this issue, it is of great importance to make a clear distinction between the measurement of locally paraxial light beams in a suitable transverse frame, and the description of the global down conversion process, which is not necessarily paraxial.
机译:光的OAM提供了一种新的资源,可以探索d维希尔伯特空间中的量子物理学,而不仅仅是由光子的偏振态产生的二维希尔伯特空间。这种d维量子通道的实现需要生成任意的工程纠缠态,因此控制纠缠光子的OAM对于许多应用而言至关重要。在这里,当相互作用的波可以表现出Poynting矢量走动时,我们将解决非共线几何中SPDC中产生的光子的轨道角动量,即空间形状。空间形状取决于由非线性几何形状引起的状态椭圆率和坡印廷矢量走动之间的相互作用。两种效应的重要性取决于三个特征长度之间的关系:非线性晶体的长度,走离长度和非共线长度。这里描述的效果与当前的实验有关,尤其是对于基于空间编码信息的量子信息协议的实现。最后,对SPDC的新几何形状的考虑,尤其是高度非共线的配置,将使我们对泵浦非线性晶体的经典光束的OAM与向下转换的光子的量子OAM之间的关系进行讨论。关于与此问题相关的实验测量,在适当的横向框架中对局部近轴光束的测量与全局下转换过程(不一定是近轴的)的描述之间的清楚区分非常重要。

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