Chirality-selected second-harmonic holography with phase and binary amplitude manipulation

2020 
Recently, multi-functional nonlinear wavefront controls have attracted extensive attentions. In particular, nonlinear holography can carry information and has potential applications in information encoding and computing. However, it is quite challenging because it puts forward higher requirements with nonlinear conversion efficiency and wavefront control performance. Here, we propose and experimentally demonstrate chirality-selected second-harmonic (SH) holography based on Au-WS2 nonlinear optical interface. It is realized using nonlinear geometry phase control with a sub-wavelength resolution. Furthermore, a binary amplitude manipulation is introduced by replacing specific rectangular nanoholes with square nanoholes. It indicates that the average intensity of holograms is increased by 39% and the holograms variation coefficient is decreased by 44% in comparison with that in pure geometry phase control. In addition, the SH signal from the monolayer WS2 with a large second-order susceptibility is further enhanced by the strong local-field in Au nanoholes, leading to a high SH conversion efficiency of 10-6. Therefore, it offers an important stepping stone towards a multi-functional SH holography, which may have potential applications in nonlinear information encoding and processing.
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