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COMPACT RECONFIGURABLE OPTICAL DEVICES USING PHASE-CHANGE MATERIALS

  • Yin Huang*
  • , Lanyan Wang
  • , Yuecheng Shen
  • , Changjun Min
  • , Georgios Veronis
  • *此作品的通讯作者
  • Central South University
  • California Institute of Technology
  • Shenzhen University
  • Louisiana State University
  • Louisiana State University

科研成果: 书/报告/会议事项章节章节同行评审

摘要

We introduce a non-parity-time-symmetric three-layer structure, consisting of a gain medium layer sandwiched between two phase-change medium layers for switching of the direction of reflectionless light propagation. We show that for this structure unidirectional reflectionlessness in the forward direction can be switched to unidirectional reflectionlessness in the backward direction at the optical communication wavelength by switching the phase-change material Ge2Sb2Te5 (GST) from its amorphous to its crystalline phase. We also show that it is the existence of exceptional points for this structure with GST in both its amorphous and crystalline phases which leads to unidirectional reflectionless propagation in the forward direction for GST in its amorphous phase, and in the backward direction for GST in its crystalline phase. We further switch photonic nanostructures between cloaking and superscattering regimes using phase-change materials at mid-infrared wavelengths. More specifically, we investigate the scattering properties of subwavelength three-layer cylindrical structures in which the material in the outer shell is the phase-change material GST. We first show that, when GST is switched between its amorphous and crystalline phases, properly designed electrically small structures can switch between resonant scattering and cloaking invisibility regimes. The contrast ratio between the scattering cross sections of the cloaking invisibility and resonant scattering regimes reaches almost unity. We then also show that larger, moderately small cylindrical structures can be designed to switch between superscattering and cloaking invisibility regimes, when GST is switched between its crystalline and amorphous phases. The contrast ratio between the scattering cross sections of cloaking invisibility and superscattering regimes can be as high as ~93%.

源语言英语
主期刊名Phase Change Materials
主期刊副标题Technology and Applications
出版商Nova Science Publisher Inc.
90-136
页数47
ISBN(电子版)9781536175370
出版状态已出版 - 1 1月 2020
已对外发布

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