论文标题
位置位置经典纠缠的不可分割的光束移位和出现
Non-separable Optical Beam Shifts and Emergence of Position-position Classical entanglement
论文作者
论文摘要
在其轨迹中的任何界面引入中,光束在纵向和横向相对于入射率的纵向和横向方向上经历了极化依赖性偏转。这种光束移位的物理学与波浪包的细胞干扰效应控制的深刻的通用波现象有关,并为计量应用开放了途径。在这里,我们通过考虑从介电界面部分反射高斯激光束的相当简单的情况来揭示纵向和横向梁移动的固有不可分割性。这种不可分割性在相应的参数空间中的某些特定区域中显着出现。我们进一步表明,这种不可分割性表现为具有经典的光线状态的位置。相关实验参数的可调性提供了对纠缠程度的控制。发现两种类型的光束移位的固有不可分割性有望丰富这种基本效果的物理起源,影响对众多类似效应的理解,并可能通过在基本高斯束中利用位置位置偏极的经典纠缠来找到有用的应用。
Under the introduction of any interface in its trajectory, an optical beam experiences polarization-dependent deflections in the longitudinal and transverse directions with respect to the plane of incidence. The physics of such optical beam shifts is connected to profound universal wave phenomena governed by the fine interference effects of wave packets and has opened up avenues towards metrological applications. Here, we reveal the inherent non-separability of the longitudinal and transverse beam shifts by considering a rather simple case of a partially reflecting Gaussian laser beam from a dielectric interface. This non-separability appears substantially in some particular regions in the corresponding parameter space. We further show that such non-separability manifests as a position-position classically entangled state of light. The tunability of the related experimental parameters offers control over the degree of entanglement. Uncovering of the inherent non-separability of the two types of beam shifts is expected to enrich the physical origin of this fundamental effect, impact the understanding of numerous analogous effects, and might find useful applications by exploiting the position-position-polarization classical entanglement in a fundamental Gaussian beam.