论文标题

站立和旅行波谐振之间缺失的链接

The missing link between standing- and traveling-wave resonators

论文作者

Zhong, Qi, Zhao, Haoqi, Feng, Liang, Busch, Kurt, Ozdemir, Sahin K., El-Ganainy, Ramy

论文摘要

光学谐振器是利用波浪干扰和反馈来限制所有三个维度的光线的结构。根据反馈机制,谐振器可以支持站立或行进波模式。多年来,这两种不同类型的模式之间的区别变得如此普遍,以至于如今,它是对光学谐振器进行分类的主要特征之一。在这里,我们表明,存在这两个群体之间的中间链接。特别是,我们引入了一类新的光子谐振器,该光子谐振器支持混合光学模式,即,在沿谐振器的一个位置,与该模式相关的电磁场具有纯粹的站立波模式,而在不同的位置,同一模式的字段代表纯波动波。提出的概念是一般的,可以使用芯片尺度的光子学以及自由空间光学元件实现。此外,它可以扩展到其他波浪现象,例如微波和声学。

Optical resonators are structures that utilize wave interference and feedback to confine light in all three dimensions. Depending on the feedback mechanism, resonators can support either standing- or traveling-wave modes. Over the years, the distinction between these two different types of modes has become so prevalent that nowadays it is one of the main characteristics for classifying optical resonators. Here, we show that an intermediate link between these two rather different groups exists. In particular, we introduce a new class of photonic resonators that supports a hybrid optical mode, i.e. at one location along the resonator the electromagnetic fields associated with the mode feature a purely standing-wave pattern, while at a different location, the fields of the same mode represent a pure traveling wave. The proposed concept is general and can be implemented using chip-scale photonics as well as free-space optics. Moreover, it can be extended to other wave phenomena such as microwaves and acoustics.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源