| Literature DB >> 28747654 |
Ronger Lu1,2, Jiachu Jiang1,2, Ruizhi Zhao1,2, Xia Feng1,2, Xuhao Hong1,3, Chao Zhang4,5, Yiqiang Qin6,7, Yongyuan Zhu1,3.
Abstract
The nonreciprocal response of the SHG process in 1D periodical nonlinear photonic crystals with a defect embedded has been theoretically studied by solving the nonlinear coupled equations. The nonreciprocal response has been deduced analytically with the solution of non-reciprocity parameters obtained. The result shows that as the non-reciprocity approaches 100%, the crystal length and the input power needed increase at a logarithmic rate. Any target nonreciprocal response can be reached in this structure by adjusting the structure parameters.Entities:
Year: 2017 PMID: 28747654 PMCID: PMC5529533 DOI: 10.1038/s41598-017-06771-2
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1A schematic of the forward and backward SHG processes in a 1D nonlinear photonic crystal with a defect embedded.
Figure 2Normalized amplitudes of FW and SHW for the forward and backward processes in the defective NPC. (a–f) are the corresponding forward and backward propagations calculated on the basis of the original coupled equations, the simplified coupled equations and the analytical solutions, respectively.
Figure 3Surface plot of the extremes of the non-reciprocity parameter with different structure parameters.
Figure 4Distribution of non-reciprocity parameter with different values of Δφ under the condition that A 0 K 1 L 1 = 0.3π. Different color represents different nonreciprocal responses.