Switching the Localized Surface Plasmon Resonance of Single Gold Nanorods with a Phase-Change Material and the Implementation of a Cellular Automata Algorithm Using a Plasmon Particle Array

T. Hira, T. Uchiyama, Kenta Kuwamura, Yuya Kihara, Tasuku Yawatari, T. Saiki
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引用次数: 8

Abstract

We investigate the modulation of the localized surface plasmon resonance (LSPR) of a gold nanorod (AuNR) using a GeSbTe film as an active medium. We demonstrate high-contrast switching of LSPR in an AuNR/GST/Au thin film sandwich structure upon phase change. To go beyond this single-particle switching functionality, we consider a plasmon particle system interacting with a phase-change material (PCM) to discuss the possibility of parallel processing devices with memory functionality, exploiting the plasticity and threshold behavior that are inherent characteristics of PCMs. We demonstrate that the temporal and spatial evolution of a plasmon-PCM array system can be equivalent to a cellular automata algorithm.
相变材料切换单金纳米棒局部表面等离子体共振及利用等离子体粒子阵列实现元胞自动机算法
我们研究了用GeSbTe薄膜作为活性介质对金纳米棒(AuNR)局部表面等离子体共振(LSPR)的调制。我们展示了高对比度的LSPR在AuNR/GST/Au薄膜夹层结构中的相变开关。为了超越这种单粒子开关功能,我们考虑了与相变材料(PCM)相互作用的等离子体粒子系统,以讨论具有记忆功能的并行处理器件的可能性,利用相变材料固有的可塑性和阈值行为。我们证明了等离子体- pcm阵列系统的时空演化可以等效于元胞自动机算法。
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