Optomechanically induced transparency/absorption in a 3D microwave cavity architecture at ambient temperature

Optomechanically induced transparency/absorption in a 3D microwave cavity architecture at ambient temperature
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DOI:
10.1063/5.0187065
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发表时间:
2024-02
期刊:
影响因子:
1.6
通讯作者:
Sumit Kumar;Matthew Kenworthy;Henry Ginn;Xavier Rojas
Sumit Kumar;Matthew Kenworthy;Henry Ginn;Xavier Rojas
中科院分区:
材料科学4区
文献类型:
--
作者:
Sumit Kumar;Matthew Kenworthy;Henry Ginn;Xavier Rojas

文献摘要

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Leveraging advancements in cavity optomechanics, we explore Optomechanically Induced Transparency/Absorption (OMIT/OMIA) in the microwave domain at ambient temperature. Contrary to previous studies employing cryogenic temperatures, this work exploits a 3D microwave cavity architecture to observe these effects at ambient temperature, broadening the scope of possible applications. The work successfully enhances the optomechanical coupling strength, enabling observable and robust OMIT/OMIA effects, and demonstrating up to 25 dB in signal amplification and 20 dB in attenuation. Operating in the unresolved sideband regime enables tunability across a wider frequency range, enhancing the system’s applicability in signal processing and sensing. The findings herein highlight the potential of optomechanical systems, presenting a simplified, cost-effective, and more feasible approach for applications at ambient temperature.