马格农
物理
光子
声子
微波食品加热
光子学
光力学
量子
光电子学
量子力学
凝聚态物理
光学
谐振器
铁磁性
作者
Zhen Shen,Guan-Ting Xu,Mai Zhang,Yan-Lei Zhang,Yu Wang,Cheng‐Zhe Chai,Chang‐Ling Zou,Guang‐Can Guo,Chun‐Hua Dong
标识
DOI:10.1103/physrevlett.129.243601
摘要
Mechanical degrees of freedom, which have often been overlooked in various quantum systems, have been studied for applications ranging from quantum information processing to sensing. Here, we develop a hybrid platform consisting of a magnomechanical cavity and an optomechanical cavity, which are coherently coupled by the straightway physical contact. The phonons in the system can be manipulated either with the magnetostrictive interaction or optically through the radiation pressure. Together with mechanical state preparation and sensitive readout, we demonstrate the microwave-to-optical conversion with an ultrawide tuning range up to 3 GHz. In addition, we observe a mechanical motion interference effect, in which the optically driven mechanical motion is canceled by the microwave-driven coherent motion. Manipulating mechanical oscillators with equal facility through both magnonic and photonic channels enables new architectures for signal transduction between the optical, microwave, mechanical, and magnetic fields.
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