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Inverse-designed all-dielectric optical diode

机译:反设计全介电二极管

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The objective-first inverse-design algorithm is used to design an ultra-compact all-dielectric optical diode. Based on silicon and air only, this optical diode relies on asymmetric spatial mode conversion between the left and right ports. The first even mode incident from the left port is transmitted to the right port after being converted into an odd mode. On the other hand, same mode incident from the right port is reflected back by the optical diode dielectric structure. The convergence and performance of the algorithm are studied, along with a transform method that converts continuous permittivity medium into a binary material design. The optimal device is studied with full electromagnetic simulations to compare its behavior under right and left incidences, in 2D and 3D settings as well. A broadband optical diode is reported with a large ratio between the two transmission directions. This illustrates the potential of the objective-first inverse-design method to design ultra-compact broadband photonic devices.
机译:客观优先的逆设计算法用于设计超紧凑的全介电光学二极管。该光电二极管仅基于硅和空气,它依赖于左右端口之间的不对称空间模式转换。从左端口入射的第一个偶数模式在转换为奇数模式后传输到右端口。另一方面,从右端口入射的相同模式被光二极管电介质结构反射回去。研究了算法的收敛性和性能,以及将连续介电常数介质转换为二元材料设计的转换方法。还将对最佳设备进行全面的电磁仿真研究,以比较其在2D和3D设置下在左右入射情况下的行为。据报道,宽带光学二极管在两个传输方向之间具有很大的比率。这说明了客观优先的逆设计方法在设计超紧凑型宽带光子器件方面的潜力。

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