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Polarization-independent symmetrical directional coupler utilizing orientation-engineered method on the x-cut lithium-niobate-on-insulator

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Abstract Due to the strong birefringence, symmetrical directional couplers (DCs) are typically polarization-sensitive in the high index contrast platforms. In this letter, we demonstrate polarization-independent directional couplers utilizing orientation-engineered method… Click to show full abstract

Abstract Due to the strong birefringence, symmetrical directional couplers (DCs) are typically polarization-sensitive in the high index contrast platforms. In this letter, we demonstrate polarization-independent directional couplers utilizing orientation-engineered method on the x-cut lithium-niobate-on-insulator (LNOI) platform. We show that the polarization-dependent coupling of a DC can be greatly engineered by controlling the orientation of the waveguides in LNOI utilizing the anisotropic property of lithium niobate (LN) material. Based on the design method, a polarization-independent DC of the representative 3dB coupling ratio is realized using the ultra-sample symmetrical structure. The DC exhibits high performance in excess losses (EL

Keywords: orientation; lithium niobate; polarization independent; symmetrical directional; polarization

Journal Title: Optics Communications
Year Published: 2021

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