Minin I V, Minin O V, Pacheco-Peña V, Beruete M
Opt Lett. 2015 May 15;40(10):2329-32. doi: 10.1364/OL.40.002329.
A photonic jet (a terajet at terahertz frequencies) commonly denotes a specific, spatially localized region in the near field on the front side of a dielectric particle with a diameter comparable with the wavelength illuminated by a plane wave on its back side (i.e., the jet emerges from the shadow surface of a dielectric particle). In this Letter, the formation of a photonic jet is demonstrated using the recently proposed three-dimensional (3D) dielectric cuboids working in the "reflection" mode when the specific, spatially localized region is localized in the direction of the incident wavefront. The results of the simulations based on the Finite Integration Technique are discussed. All dimensions are given in wavelength units so that all results can be scaled to any frequency of interest, including optical frequencies, thus simplifying the fabrication process compared with spherical dielectrics. The results presented here may be of interest for novel applications, including microscopy techniques and sensors.
光子射流(太赫兹频率下的太射流)通常指的是在介电粒子前侧近场中的一个特定的、空间局部化区域,该介电粒子的直径与背面被平面波照射的波长相当(即射流从介电粒子的阴影表面出现)。在本信函中,当特定的、空间局部化区域沿入射波前方向定位时,利用最近提出的在“反射”模式下工作的三维(3D)介电长方体演示了光子射流的形成。讨论了基于有限积分技术的模拟结果。所有尺寸均以波长单位给出,这样所有结果都可以按比例缩放到任何感兴趣的频率,包括光学频率,因此与球形电介质相比简化了制造过程。这里展示的结果可能对包括显微镜技术和传感器在内的新型应用具有重要意义。