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基于渐变折射率多模光纤的全光调制非易失性光开关。

All-optically modulated nonvolatile optical switching based on a graded-index multimode fiber.

作者信息

Zhang Yu, Liu Shuai, Chen Jiming, Cheng Siying, Jin Wei, Zhang Yaxun, Liu Zhihai, Zhang Jianzhong, Yuan Libo

出版信息

Opt Express. 2022 Sep 26;30(20):36691-36699. doi: 10.1364/OE.468095.

Abstract

Photonic switches have attractive application prospects in optical communication data networks that require dynamic reconfiguration. Integrating optical switching devices with optical fiber, the most widely deployed photonic technology platform, can realize signal transmission and processing in practical applications. Here, we demonstrate the multilevel optical switching using the phase-change material GeSbTe (GST) integrated on a graded-index multimode fiber. This switching process works by exploiting the significant difference in extinction coefficient between the crystalline state and the amorphous state of the GST. Using GST to achieve the switch function, no external energy source is needed to maintain the existing state of the switch, and the device is nonvolatile. This multi-level optical switch is an all-fiber integrated device. We apply GST to the end facets of the graded-index multimode fiber by magnetron sputtering, which is a reflective structure. A pulsing scheme is used to control the optical propagation state of the optical modulation signal to realize the switching function. It can store up to 11 non-volatile reliable and repeatable levels encoded by the pump source laser with a wavelength of 1550 nm. At the same time, the switching process between states is on the order of hundreds of nanoseconds. The present experimental results demonstrate the feasibility of 11 multilevel states in the field of optical fibers commonly used in communications. It can be well coupled with the all-fiber terminal device. It also shows that the device is still applicable in the 1525 nm∼1610 nm broadband range, promising for designing future multilevel photonic switches and memory devices.

摘要

光子开关在需要动态重新配置的光通信数据网络中具有诱人的应用前景。将光开关器件与最广泛部署的光子技术平台光纤集成,可以在实际应用中实现信号传输和处理。在此,我们展示了使用集成在渐变折射率多模光纤上的相变材料锗锑碲(GST)实现的多级光开关。这种开关过程利用了GST晶体态和非晶态之间消光系数的显著差异。使用GST实现开关功能,无需外部能源来维持开关的现有状态,并且该器件是非易失性的。这种多级光开关是一种全光纤集成器件。我们通过磁控溅射将GST应用于渐变折射率多模光纤的端面,这是一种反射结构。采用脉冲方案来控制光调制信号的光传播状态以实现开关功能。它可以存储由波长为1550 nm的泵浦源激光编码的多达11个非易失性可靠且可重复的电平。同时,状态之间的切换过程在数百纳秒量级。目前的实验结果证明了在通信常用的光纤领域实现11个多级状态的可行性。它可以与全光纤终端设备良好耦合。这也表明该器件在1525 nm∼1610 nm宽带范围内仍然适用,有望用于设计未来的多级光子开关和存储器件。

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