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基于高泛音体声波谐振器与光子电路集成的双向微波 - 光转换

Bidirectional microwave-optical transduction based on integration of high-overtone bulk acoustic resonators and photonic circuits.

作者信息

Blésin Terence, Kao Wil, Siddharth Anat, Wang Rui N, Attanasio Alaina, Tian Hao, Bhave Sunil A, Kippenberg Tobias J

机构信息

Institute of Physics, Swiss Federal Institute of Technology Lausanne (EPFL), CH-1015, Lausanne, Switzerland.

Center of Quantum Science and Engineering (EPFL), CH-1015, Lausanne, Switzerland.

出版信息

Nat Commun. 2024 Jul 19;15(1):6096. doi: 10.1038/s41467-024-49467-8.

Abstract

Coherent interconversion between microwave and optical frequencies can serve as both classical and quantum interfaces for computing, communication, and sensing. Here, we present a compact microwave-optical transducer based on monolithic integration of piezoelectric actuators on silicon nitride photonic circuits. Such an actuator couples microwave signals to a high-overtone bulk acoustic resonator defined by the silica cladding of the optical waveguide core, suspended to enhance electromechanical and optomechanical couplings. At room temperature, this triply resonant piezo-optomechanical transducer achieves an off-chip photon number conversion efficiency of 1.6 × 10 over a bandwidth of 25 MHz at an input pump power of 21 dBm. The approach is scalable in manufacturing and does not rely on superconducting resonators. As the transduction process is bidirectional, we further demonstrate the synthesis of microwave pulses from a purely optical input. Capable of leveraging multiple acoustic modes for transduction, this platform offers prospects for frequency-multiplexed qubit interconnects and microwave photonics at large.

摘要

微波与光频率之间的相干相互转换可作为用于计算、通信和传感的经典和量子接口。在此,我们展示了一种基于在氮化硅光子电路上单片集成压电致动器的紧凑型微波 - 光换能器。这种致动器将微波信号耦合到由光波导芯的二氧化硅包层定义的高次谐波体声波谐振器,该谐振器通过悬空来增强机电和光机械耦合。在室温下,这种三重谐振压电 - 光机械换能器在21 dBm的输入泵浦功率下,在25 MHz的带宽上实现了1.6×10的片外光子数转换效率。该方法在制造上具有可扩展性,并且不依赖于超导谐振器。由于转换过程是双向的,我们进一步展示了从纯光输入合成微波脉冲的过程。该平台能够利用多种声学模式进行转换,为频率复用量子比特互连和大规模微波光子学提供了前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c48f/11271592/1f94c2aff282/41467_2024_49467_Fig1_HTML.jpg

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