Reflective grating embedded between two dielectric slabs under second Bragg mounting
                
                        
                        JIMIN FANG1,
                        
                        BO WANG1,*
                            ,
                        
                        CHEN FU1,
                        
                        KUNHUA WEN1,
                        
                        ZIMING MENG1,
                        
                        QU WANG1,
                        
                        ZHAOGANG NIE1,
                        
                        XIANGJUN XING1,
                        
                        LI CHEN1,
                        
                        LIANG LEI1,
                        
                        JINYUN ZHOU1
                        
                    
                    Affiliation
                    
                        
                        - School of Physics and Optoelectronic Engineering, Guangdong University of Technology, Guangzhou 510006, China
 
        
        Abstract
        A novel design of reflective single-port polarization-independent grating with a metal mirror, a connection layer and a covering layer under second Bragg mounting is reported in this paper. A better grating structure by rigorous coupled-wave method can be obtained. The grating parameters are optimized for high-efficiency output. The optimization results show that in the wavelength range of 1546-1554 nm or the incident angle is between 38.0-39.3°, the -2nd order of the grating has a good high-efficiency output effect, and the efficiency can reach more than 90%, which will be a good application in the field of laser.
        Keywords
        Single-port output, Reflective grating, Under second Bragg mounting.
        Citation
        JIMIN FANG, BO WANG, CHEN FU, KUNHUA WEN, ZIMING MENG, QU WANG, ZHAOGANG NIE, XIANGJUN XING, LI CHEN, LIANG LEI, JINYUN ZHOU, Reflective grating embedded between two dielectric slabs under second Bragg mounting, Optoelectronics and Advanced Materials - Rapid Communications, 14, 7-8, July-August 2020, pp.302-305 (2020).
        Submitted at: Nov. 16, 2019
 
        Accepted at: Aug. 18, 2020