论文标题

蓝光锂锂锂在蓝宝石上的Gigahertz语音集成电路

Gigahertz phononic integrated circuits on thin-film lithium niobate on sapphire

论文作者

Mayor, Felix M., Jiang, Wentao, Sarabalis, Christopher J., McKenna, Timothy P., Witmer, Jeremy D., Safavi-Naeini, Amir H.

论文摘要

声学设备在经典信息处理中起着重要作用。机械波的速度和较低的损失可以使紧凑,有效的元素在无线电和微波频率下延迟,过滤和存储电信号。发现更好地控制语音子在芯片上传播的方法是迈向更大规模的声音电路和系统迈出的重要一步。我们提出了一个平台,灵感来自数十年的集成光子学的进步,该平台在蓝宝石在蓝宝石的薄膜中使用了强大的压电效应,以激发由于索引引导的语音模拟引起的渗出的引导源性的声波免疫到散装中。我们演示了一个有效的传感器,该传感器匹配50欧姆,并在1微米宽机械波导中作为该平台的关键构建块。将这些组件放在一起,我们实现了声音延迟线,赛道谐振器和用于传感应用的蜿蜒线波导。为了评估该平台对新兴量子技术的承诺,我们表征了低温下的损失,并在4 kelvin处的50,000阶衡量质量因素。最后,我们在这些电路中演示了语音四波混合,并测量非线性系数,以提供相关参数过程所需的功率估计。

Acoustic devices play an important role in classical information processing. The slower speed and lower losses of mechanical waves enable compact and efficient elements for delaying, filtering, and storing of electric signals at radio and microwave frequencies. Discovering ways of better controlling the propagation of phonons on a chip is an important step towards enabling larger scale phononic circuits and systems. We present a platform, inspired by decades of advances in integrated photonics, that utilizes the strong piezoelectric effect in a thin film of lithium niobate on sapphire to excite guided acoustic waves immune from leakage into the bulk due to the phononic analogue of index-guiding. We demonstrate an efficient transducer matched to 50 ohm and guiding within a 1-micron wide mechanical waveguide as key building blocks of this platform. Putting these components together, we realize acoustic delay lines, racetrack resonators, and meander line waveguides for sensing applications. To evaluate the promise of this platform for emerging quantum technologies, we characterize losses at low temperature and measure quality factors on the order of 50,000 at 4 kelvin. Finally, we demonstrate phononic four-wave mixing in these circuits and measure the nonlinear coefficients to provide estimates of the power needed for relevant parametric processes.

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