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在可见光范围内部分悬浮的氮化铝波导中可定制的受激布里渊散射。

Tailorable stimulated Brillouin scattering in a partially suspended aluminium nitride waveguide in the visible range.

作者信息

Li Peng, Ou Jun-Yu, Mashanovich Goran Z, Yan Jize

出版信息

Opt Express. 2022 Jul 18;30(15):27092-27108. doi: 10.1364/OE.462356.

DOI:10.1364/OE.462356
PMID:36236887
Abstract

Stimulated Brillouin scattering (SBS) has been widely applied in narrow line-width laser, microwave filters, optical gyroscopes, and other fields. However, most research is limited within near-infrared to mid-infrared range. This is due to the limited transparent window in most materials, such as silicon and germanium. Aluminium nitride (AlN) is a novel III-V material with a wide transparent window from 200 nm and an appropriate refractive index to confine the light. In this paper, we first validate the full-vectorial formalism to calculate SBS gain based on the measured results from a silicon platform. Compared to previous research, our model achieves higher accuracy in terms of frequency, Q factor, as well as Brillouin gain coefficient without modifying the waveguide width. It also reveals the importance of matching rotation matrix and crystalline coordinate system. Then, we investigate the SBS in a partially suspended AlN waveguide at 450 nm based on the validated method. It shows a wide tunability in frequency from 16 GHz to 32 GHz for forward SBS and a range from 42 GHz to 49 GHz for backward SBS. We numerically obtain the value of Brillouin gain of 1311 Wm when Q factor is dominated by anchor loss for forward SBS of transverse electric mode. We also find out that in the case for forward SBS of transverse-magnetic mode, anchor loss could be greatly suppressed when the node point of the selected acoustic mode matches with the position of pillar anchor. Our findings, to the best of our knowledge, pave a new way to obtain Brillouin-related applications in integrated photonic circuit within the visible range.

摘要

受激布里渊散射(SBS)已广泛应用于窄线宽激光器、微波滤波器、光学陀螺仪等领域。然而,大多数研究局限于近红外到中红外范围。这是由于大多数材料(如硅和锗)的透明窗口有限。氮化铝(AlN)是一种新型的III-V族材料,具有从200纳米开始的宽透明窗口和合适的折射率来限制光。在本文中,我们首先基于硅平台的测量结果验证了用于计算SBS增益的全矢量形式。与先前的研究相比,我们的模型在频率、品质因数以及布里渊增益系数方面无需修改波导宽度就能实现更高的精度。它还揭示了匹配旋转矩阵和晶体坐标系的重要性。然后,我们基于验证的方法研究了450纳米处部分悬空的AlN波导中的SBS。对于正向SBS,其频率在16吉赫兹到32吉赫兹之间具有广泛的可调性,对于反向SBS,频率范围在42吉赫兹到49吉赫兹之间。当品质因数由锚固损耗主导时,对于横向电模的正向SBS,我们通过数值计算得到布里渊增益值为1311瓦/米。我们还发现,在横向磁模正向SBS的情况下,当所选声学模的节点与柱形锚固的位置匹配时,锚固损耗可以得到极大抑制。据我们所知,我们的研究结果为在可见范围内的集成光子电路中获得与布里渊相关的应用开辟了一条新途径。

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