This work presents a novel method for achieving controlled polarization-selective enhancement of the Photonic Spin Hall Effect (PSHE) by integrating waveguiding effects with surface plasmonic behavior. The conventional plasmonic wave generation, limited to TM waves, is expanded by introducing waveguiding effects, enabling resonances for TE waves. This dual resonance mechanism contributes to the enhancement of PSHE for both horizontally (H) and vertically (V) polarized waves. Utilizing thin metal layers (Ag and Al) of a few nanometers in conjunction with waveguiding glass layers under 500nm thickness, significant enhancements of PSHE are demonstrated at the submillimeter scale. This integrated approach offers a promising avenue for tailoring and controlling PSHE with applications in advanced photonic devices.
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