论文标题

用于宽带多模型微波转换的波导腔光磁磁化

Waveguide cavity optomagnonics for broadband multimode microwave-to-optics conversion

论文作者

Zhu, Na, Zhang, Xufeng, Han, Xu, Zou, Chang-Ling, Zhong, Changchun, Wang, Chiao-Hsuan, Jiang, Liang, Tang, Hong X.

论文摘要

腔光磁通学已成为研究相干光子旋转相互作用以及可调微波转换的有前途的平台。然而,当前在铁磁晶体中腔磁通量的实现仍然比最新的腔体光学设备大的数量级数量级,从而导致磁光相互作用强度非常有限。在这里,我们演示了一种基于集成波导的空腔光磁性设备及其用于微波转换的应用。通过设计铁磁性肋波导以支持具有最大模式与光场重叠的多种木磁模式,我们实现了高磁光合作的高度,与在抛光的YIG球体上获得的先前记录相比,高度三个数量级。此外,我们在约8.45 GHz至1550 nm的光线下实现了微波光子的可调转换,其宽转换带宽高达16.1 MHz。系统的独特功能指向量子光学和镁质之间十字路口的新应用。

Cavity optomagnonics has emerged as a promising platform for studying coherent photon-spin interactions as well as tunable microwave-to-optical conversion. However, current implementation of cavity optomagnonics in ferrimagnetic crystals remains orders of magnitude larger in volume than state-of-the-art cavity optomechanical devices, resulting in very limited magneto-optical interaction strength. Here, we demonstrate a cavity optomagnonic device based on integrated waveguides and its application for microwave-to-optical conversion. By designing a ferrimagnetic rib waveguide to support multiple magnon modes with maximal mode overlap to the optical field, we realize a high magneto-optical cooperativity which is three orders of magnitude higher compared to previous records obtained on polished YIG spheres. Furthermore, we achieve tunable conversion of microwave photons at around 8.45 GHz to 1550 nm light with a broad conversion bandwidth as large as 16.1 MHz. The unique features of the system point to novel applications at the crossroad between quantum optics and magnonics.

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