论文标题

多核光纤及其应用中的光学机械相互作用

Opto-Mechanical Interactions in Multi-Core Optical Fibers and Their Applications

论文作者

Diamandi, Hilel Hagai, London, Yosef, Bergman, Arik, Bashan, Gil, Madrigal, Javier, Barrera, David, Sales, Salvador, Zadok, Avi

论文摘要

正在开发包含多个核心的光纤以增强太空多路复用的光学通信网络的能力。在许多情况下,纤维设计用于可忽略的芯之间光电功率的直接耦合。然而,核心仍然嵌入一个机械自义的覆层中。纤维覆层几何形状支持的弹性(或声学)模式与多个核心重叠。声波可以通过电陷在任何核心中刺激光波。一旦激发,声波也可能引起光弹性的扰动,同时对其他核心的光波扰动。即使直接光学串扰非常弱,这种光学机械耦合也会产生核心间跨相调制效应。跨相调制光谱达到数百个兆赫频率。它可能由离散和狭窄的峰组成,或者可能会根据几何布局而变为准连续。共振频率的效应的大小与由于Kerr非线性引起的核心内跨相调制相当。证明了两种潜在的应用:不需要射频电滤波器的单频光电振荡器,以及在无法达到光的多核纤维覆层外的液体的点感应。

Optical fibers containing multiple cores are being developed towards capacity enhancement in space-division multiplexed optical communication networks. In many cases, the fibers are designed for negligible direct coupling of optical power among the cores. The cores remain, however, embedded in a single, mechanically-unified cladding. Elastic (or acoustic) modes supported by the fiber cladding geometry are in overlap with multiple cores. Acoustic waves may be stimulated by light in any core through electrostriction. Once excited, the acoustic waves may induce photo-elastic perturbations to optical waves in other cores as well. Such opto-mechanical coupling gives rise to inter-core cross-phase modulation effects, even when direct optical crosstalk is very weak. The cross-phase modulation spectrum reaches hundreds of megahertz frequencies. It may consist of discrete and narrow peaks, or may become quasi-continuous, depending on the geometric layout. The magnitude of the effect at the resonance frequencies is comparable with that of intra-core cross-phase modulation due to Kerr nonlinearity. Two potential applications are demonstrated: single-frequency opto-electronic oscillators that do not require radio-frequency electrical filters, and point-sensing of liquids outside the cladding of multi-core fibers, where light cannot reach.

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