论文标题
各向异性空间纠缠
Anisotropic Spatial Entanglement
论文作者
论文摘要
通过自发参数下转换(SPDC)生成的光子对具有横向位置和动量自由度的强相关性。对于此类光子对,横向位置相关长度取决于晶体厚度和泵波长,而横向动量相关长度取决于泵的腰围和泵的空间相干长度。通过控制这些参数,可以设计空间纠缠。在这里,我们通过使用椭圆形的高斯光束来改变泵的圆形不对称性,以改变横向方向上的纠缠程度,我们称之为各向异性纠缠。我们显示了各向异性纠缠程度与梁宽度中的不对称程度之间的相互关系。此外,我们还表明,对于高度不对称的泵梁,沿y方向的纠缠完全消失,而x方向的纠缠保持不变。
The photon-pairs generated through spontaneous parametric down-conversion (SPDC) possess strong correlations in their transverse position and momentum degrees of freedom. For such photon pairs, the transverse position correlation length depends on the crystal thickness and the pump wavelength, whereas the transverse momentum correlation length depends on the beam waist and spatial coherence length of the pump. By controlling these parameters, it is possible to engineer the spatial entanglement. Here, we utilize the circular asymmetry of the pump by using an elliptical-Gaussian beam to change the degree of entanglement in transverse directions, which we call anisotropic entanglement. We show the interrelation between the degree of anisotropic entanglement and the asymmetry in the beam width. In addition, we also show that for a highly asymmetric pump beam, the entanglement along the y-direction completely vanishes, whereas the entanglement in the x-direction remains intact.