论文标题
高Q机械外面模式的集成光学读取
Integrated optical-readout of a high-Q mechanical out-of-plane mode
论文作者
论文摘要
高Q宏观机械谐振器的快速发展使光学机械方面取得了巨大进步。进一步的改进可以允许在环境温度下进行量子限制或量子增强的应用。其余的一些挑战包括将高Q结构整合在芯片上,同时通过光学读出来实现大量的耦合强度。在这里,我们提出了一种多功能制造方法,它使我们能够构建完全集成的光力结构。我们将光子晶体腔直接放在具有高Q基本偏置模式的机械谐振器上方,并由小间隙隔开。高度密闭的光场与机械模式具有较大的重叠,从而实现了强烈的光学相互作用强度。此外,我们实施了一种新型的光子晶体设计,该设计允许具有很大的腔体光子数,这是光力学实验和传感器应用的非常重要的功能。我们的多功能方法不仅限于我们的特定设计,还可以将平面外光学读数集成到几乎所有设备布局中。此外,可以将其缩放到大型阵列,并为实现基于高Q平面外模式的机械谐振器实现量子实验和应用的方式铺平了道路。
The rapid development of high-Q macroscopic mechanical resonators has enabled great advances in optomechanics. Further improvements could allow for quantum-limited or quantum-enhanced applications at ambient temperature. Some of the remaining challenges include the integration of high-Q structures on a chip, while simultaneously achieving large coupling strengths through an optical read-out. Here, we present a versatile fabrication method, which allows us to build fully integrated optomechanical structures. We place a photonic crystal cavity directly above a mechanical resonator with high-Q fundamental out-of-plane mode, separated by a small gap. The highly confined optical field has a large overlap with the mechanical mode, enabling strong optomechanical interaction strengths. Furthermore, we implement a novel photonic crystal design, which allows for a very large cavity photon number, a highly important feature for optomechanical experiments and sensor applications. Our versatile approach is not limited to our particular design but allows for integrating an out-of-plane optical read-out into almost any device layout. Additionally, it can be scaled to large arrays and paves the way to realizing quantum experiments and applications with mechanical resonators based on high-Q out-of-plane modes alike.