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集成波导中相变光子结构的可逆激光压印

Reversible Laser Imprinting of Phase Change Photonic Structures in Integrated Waveguides.

作者信息

Menshikov Evgenii, Lazarenko Petr, Kovalyuk Vadim, Dubkov Sergey, Maslova Nadezhda, Prokhodtsov Alexey, Vorobyov Alexander, Kozyukhin Sergey, Goltsman Gregory, Sinev Ivan S

机构信息

School of Physics and Engineering, ITMO University, St. Petersburg 197101, Russia.

Department of Information Engineering, University of Brescia, Brescia 25123, Italy.

出版信息

ACS Appl Mater Interfaces. 2024 Jul 24;16(29):38345-38354. doi: 10.1021/acsami.4c04573. Epub 2024 Jul 15.

Abstract

Formation of laser-induced periodic surface structures (LIPSS) is known as a fast and robust method of functionalization of material surfaces. Of particular interest are LIPSS that manifest as periodic modulation of phase state of the material, as it implies reversibility of phase modification that constitute rewritable LIPSS, and recently was demonstrated for chalcogenide phase change materials (PCMs). Due to remarkable properties of chalcogenide PCMs─nonvolatality, prominent optical contrast and ns switching speed─such novel phase change LIPSS hold potential for exciting applications in all-optical tunable photonics. In this work we explore phase change LIPSS formation in thin films of GeSbTe (GST) integrated with planar and rib waveguides. We demonstrate that by fine-tuning laser radiation, the morphology of phase change LIPSS can be controlled, including their period and fill factor, and investigate the limitations of multicycle rewriting of the structures. We also demonstrate the formation of phase change LIPSS on a 1D waveguide, which has potential for use as tunable Bragg filters or structures for on-demand light decoupling into the far-field. The presented concept of applying phase change LIPSS offers a promising approach to enable fast and simple tuning in integrated photonic devices.

摘要

激光诱导周期性表面结构(LIPSS)的形成是一种快速且可靠的材料表面功能化方法。特别令人感兴趣的是那些表现为材料相态周期性调制的LIPSS,因为这意味着构成可重写LIPSS的相改性具有可逆性,最近在硫族化物相变材料(PCM)中得到了证实。由于硫族化物PCM具有显著的特性——非挥发性、突出的光学对比度和纳秒级开关速度——这种新型的相变LIPSS在全光可调光子学中具有令人兴奋的应用潜力。在这项工作中,我们探索了与平面和肋形波导集成的锗锑碲(GST)薄膜中的相变LIPSS形成。我们证明,通过微调激光辐射,可以控制相变LIPSS的形态,包括其周期和填充因子,并研究结构多周期重写的局限性。我们还展示了在一维波导上形成相变LIPSS,其有潜力用作可调谐布拉格滤波器或用于按需将光解耦到远场的结构。所提出的应用相变LIPSS的概念为在集成光子器件中实现快速且简单的调谐提供了一种有前景的方法。

相似文献

1
Reversible Laser Imprinting of Phase Change Photonic Structures in Integrated Waveguides.集成波导中相变光子结构的可逆激光压印
ACS Appl Mater Interfaces. 2024 Jul 24;16(29):38345-38354. doi: 10.1021/acsami.4c04573. Epub 2024 Jul 15.
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Rewritable and Tunable Laser-Induced Optical Gratings in Phase-Change Material Films.相变材料薄膜中的可重写和可调谐激光诱导光学光栅
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A phase-change thin film-tuned photonic crystal device.一种相变薄膜调谐光子晶体器件。
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