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Suppressing DC Drift in Thin-Film Lithium Niobate Modulators via Multiferroic Skyrmion Excitation

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arxiv 2503.19044 v1 pith:5RLF6T4F submitted 2025-03-24 physics.app-ph

classification physics.app-ph
keywords driftchargecriticalexcitationfirstlithiummodulatorsmultiferroic
verification ladder T0 review T1 audit T2 compute T3 formal
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Thin-film lithium niobate (TFLN) modulators, despite their superior electro-optic performance, face critical DC drift challenges under low-frequency or prolonged operation. In this work, we demonstrate a novel suppression strategy by exciting multiferroic skyrmions in TFLN, achieving drift-free square-wave modulation for voer 1 hour-the first solution eliminating feedback systems. This breakthrough originates from dual carrier suppression mechanisms:(1) charge density reduction via skyrmion-induced polarization nano-regions (PNRs) excitation, and (2) mean free path restriction through polarization gradients at PNRs domain walls. By directly targeting the root cause of DC drift-mobile charge redistribution-our method uniquely preserves the essential SiO2 upper cladding, resolving the longstanding trade-off between drift mitigation and waveguide protection. Crucially, our work also provides the first experimental observation of interconversion between short-term drift (seconds-scale transient overshoot) and long-term drift (hours-scale baseline shift), offering critical insights into their unified origin.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Voltage-Programmable Photon Statistics Using a High-Extinction Thin-film Lithium Niobate Modulator

    physics.optics 2026-04 unverdicted novelty 7.0 of 10

    A cascaded TFLN Mach-Zehnder modulator with >50 dB extinction enables voltage-tunable photon statistics with g2(0) from 1.0 to 1.7 by exploiting seed suppression and EDFA dynamics.

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