布里渊区
布里渊散射
激光阈值
光学
波导管
材料科学
散射
光子学
光散射
布里渊光谱学
光电子学
光纤
波长
物理
作者
Fan Yang,Flavien Gyger,Adrien Godet,Jacques R. Chrétien,Li Zhang,Meng Pang,Jean‐Charles Beugnot,Luc Thévenaz
标识
DOI:10.21203/rs.3.rs-456312/v1
摘要
Abstract Brillouin scattering has been widely exploited for advanced photonics functionalities such as microwave photonics, signal processing, sensing, lasing, and more recently in micro- and nano-photonic waveguides. So far, all the works have focused on the opto-acoustic interaction driven from the core region of micro- and nano-waveguides. Here we observe, for the first time, an efficient Brillouin scattering generated by an evanescent field nearby a sub-wavelength waveguide embedded in a pressurised gas cell, with a maximum gain coefficient of 18.90 ± 0.17 m^(-1)W^(-1). This gain is 11 times larger than the highest Brillouin gain obtained in a hollow-core fibre and 79 times larger than in a standard single-mode fibre. The realisation of strong free-space Brillouin scattering from a waveguide benefits from the flexibility of confined light while providing a direct access to the opto-acoustic interaction, as required in free-space optoacoustics such as Brillouin spectroscopy and microscopy. Therefore, our work creates an important bridge between Brillouin scattering in waveguides, Brillouin spectroscopy and microscopy, and opens new avenues in light-sound interactions, optomechanics, sensing, lasing and imaging.
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