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June 1, 2026Nanophotonics0 citationsOpen Access

Simultaneous Type‐0 and Type‐I Optical Parametric Oscillation in Submicron Poled Thin‐Film Lithium Niobate

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FYFengyan YangHTHong Tang

Key Points

  • This research aims to achieve dual optical parametric oscillations in a submicron poled lithium niobate device.
  • Implemented polarization-insensitive submicron periodic poling in a thin-film lithium niobate microring resonator.
  • Achieved temperature-controlled resonance alignment to selectively activate polarization channels.
  • Evaluated optical parametric oscillation thresholds for Type-0 and Type-I processes.
  • Observed Type-0 parametric oscillation threshold at 290 μW and Type-I at 3 mW.
  • Thresholds achieved are comparable to state-of-the-art on-chip optical parametric oscillators.
  • Submicron poled TFLN shows potential as a compact and reconfigurable platform for light generation.

Abstract

ABSTRACT We demonstrate dual optical parametric oscillations in a thin‐film lithium niobate microring resonator enabled by polarization‐insensitive submicron periodic poling. Under degenerate backward quasi‐phase matching, the counter‐propagating signal and idler wavevectors cancel, such that the phase‐matching condition is determined solely by the pump wavevector. As a result, a single submicron poling period simultaneously supports both Type‐0 (TM TM + TM) and Type‐I (TM TE + TE) parametric interactions in the same device. Temperature‐controlled resonance alignment further enables selective activation of either polarization channel. We observe optical parametric oscillation with thresholds of 290 μW for the Type‐0 process and 3 mW for the Type‐I process, both comparable to state‐of‐the‐art on‐chip OPO thresholds. These results establish submicron poled TFLN as a compact and reconfigurable platform for polarization‐diverse parametric light generation.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/6a1d224302fbce913063806dhttps://doi.org/10.1002/nap2.70155
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