Chen Yu-Yuan, Liu Zhuan-Zhuan, Wan Ren-Gang
Appl Opt. 2017 Jul 10;56(20):5736-5744. doi: 10.1364/AO.56.005736.
We propose a scheme for a beam splitter and a beam router via an electromagnetically induced blazed grating in a four-level double-Λ system driven by an intensity-modulated coupling field and an incoherent pump field. The blazed grating relies on the incoherent pump process, which helps in inducing large refractivity with suppressed absorption or even gain. Consequently, the weak probe beam can be effectively deflected with high diffraction efficiency, and, meanwhile, its energy is amplified. When using an intensity mask with two symmetric domains in the coupling field, the presented blazed grating provides the possibility of a symmetric beam splitter. The diffraction efficiency and diffraction order of the gratings are sensitive to the intensity of the coupling field, and, thus, the gratings can function as a tunable asymmetric beam splitter or a beam router, which distributes the probe field into different spatial directions. Therefore, the proposed scheme may have potential applications in optical communication and networking.
我们提出了一种在由强度调制耦合场和非相干泵浦场驱动的四能级双Λ系统中,通过电磁诱导闪耀光栅实现分束器和光束路由器的方案。该闪耀光栅依赖于非相干泵浦过程,这有助于在抑制吸收甚至增益的情况下诱导出大的折射率。因此,弱探测光束能够以高衍射效率被有效偏转,同时其能量得到放大。当在耦合场中使用具有两个对称区域的强度掩模时,所提出的闪耀光栅提供了实现对称分束器的可能性。光栅的衍射效率和衍射级对耦合场的强度敏感,因此,光栅可作为可调谐非对称分束器或光束路由器,将探测场分布到不同的空间方向。所以,所提出的方案可能在光通信和网络中有潜在应用。