Electrical control of surface acoustic waves
Electrical control of surface acoustic waves
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DOI:
10.1038/s41928-022-00773-3
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发表时间:
2021-01
影响因子:
34.3
通讯作者:
Linbo Shao;Di Zhu;M. Colangelo;Daehun Lee;N. Sinclair;Yaowen Hu;P. Rakich;K. Lai;K. Berggren-K.-Berggr
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文献类型:
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作者:
Linbo Shao;Di Zhu;M. Colangelo;Daehun Lee;N. Sinclair;Yaowen Hu;P. Rakich;K. Lai;K. Berggren-K.-Berggr
Acoustic waves at microwave frequencies are widely used in wireless communication and are potential information carriers in quantum applications. However, most acoustic devices are passive components, and the development of phononic integrated circuits is limited by the inability to control acoustic waves in a low-loss, scalable manner. Here we report the electrical control of gigahertz travelling acoustic waves at room temperature and millikelvin temperatures. We achieve phase modulation by tuning the elasticity of a lithium niobate acoustic waveguide via the electro-acoustic effect. This phase modulator is then used to build an acoustic frequency shifter based on serrodyne phase modulation, and phase modulators in a Mach–Zehnder interferometer configuration are used to create an electro-acoustic amplitude modulator. By tailoring the phase matching between acoustic and quasi-travelling electric fields, we achieve reconfigurable non-reciprocal modulation with a non-reciprocity of over 40 dB. To illustrate the potential of the approach in quantum applications, we show that our electro-acoustic modulator can provide coherent modulation of single-phonon-level acoustic waves at 50 mK.