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Low-loss far-infrared surface phonon polaritons in suspended SrTiO3 nanomembranes

Low-loss far-infrared surface phonon polaritons in suspended SrTiO3 nanomembranes

来源:Arxiv_logoArxiv
英文摘要

Phonon polaritons (PhPs), excitations arising from the coupling of light with lattice vibrations, enable light confinement and local field enhancement, which is essential for various photonic and thermal applications. To date, PhPs with high confinement and low loss have been mainly observed in the mid-infrared regime and mostly in manually exfoliated flakes of van der Waals (vdW) materials. In this work, we demonstrate the existence of low-loss, thickness-tunable phonon polaritons in the far-infrared regime within transferable free-standing SrTiO3 membranes synthesized through a scalable approach, achieving high figures of merit, which are comparable to the previous record values from the vdW materials. Leveraging atomic precision in thickness control, large dimensions, and compatibility with mature oxide electronics, functional oxide membranes present a promising large-scale two-dimensional (2D) platform alternative to vdW materials for on-chip polaritonic technologies in the far-infrared regime.

Konnor Koons、Hans A. Bechtel、Javier Taboada-Gutiérrez、Reza Ghanbari、Yueyin Wang、Stephanie N. Gilbert Corder、Alexey B. Kuzmenko、Ruijuan Xu、Yin Liu

物理学

Konnor Koons,Hans A. Bechtel,Javier Taboada-Gutiérrez,Reza Ghanbari,Yueyin Wang,Stephanie N. Gilbert Corder,Alexey B. Kuzmenko,Ruijuan Xu,Yin Liu.Low-loss far-infrared surface phonon polaritons in suspended SrTiO3 nanomembranes[EB/OL].(2025-04-08)[2025-04-30].https://arxiv.org/abs/2504.06050.点此复制

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