Ou Yangxin, Pardo David, Chen Yuntian
Opt Express. 2015 Nov 16;23(23):30259-69. doi: 10.1364/OE.23.030259.
We present a Fourier finite element modeling of light emission of dipolar emitters coupled to infinitely long waveguides. Due to the translational symmetry, the three-dimensional (3D) coupled waveguide-emitter system can be decomposed into a series of independent 2D problems (2.5D), which reduces the computational cost. Moreover, the reduced 2D problems can be extremely accurate, compared to its 3D counterpart. Our method can precisely quantify the total emission rates, as well as the fraction of emission rates into different modal channels for waveguides with arbitrary cross-sections. We compare our method with dyadic Green's function for the light emission in single mode metallic nanowire, which yields an excellent agreement. This method is applied in multi-mode waveguides, as well as multi-core waveguides. We further show that our method has the full capability of including dipole orientations, as illustrated via a rotating dipole, which leads to unidirectional excitation of guide modes. The 2.5D Finite Element Method (FEM) approach proposed here can be applied for various waveguides, thus it is useful to interface single-photon single-emitter in nano-structures, as well as for other scenarios involving coupled waveguide-emitters.
我们提出了一种用于模拟与无限长波导耦合的偶极发射器发光的傅里叶有限元模型。由于平移对称性,三维(3D)耦合波导 - 发射器系统可分解为一系列独立的二维问题(2.5D),这降低了计算成本。此外,与三维模型相比,简化后的二维问题可以具有极高的精度。我们的方法能够精确量化总发射率,以及具有任意横截面的波导中进入不同模式通道的发射率分数。我们将我们的方法与用于单模金属纳米线发光的并矢格林函数进行了比较,结果显示出极好的一致性。该方法可应用于多模波导以及多芯波导。我们进一步表明,我们的方法完全能够纳入偶极方向,如通过旋转偶极所示,这会导致导模的单向激发。这里提出的2.5D有限元方法(FEM)可应用于各种波导,因此它对于纳米结构中的单光子单发射器接口以及其他涉及耦合波导 - 发射器的场景很有用。