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基于光学激活的具有可重构功能的太赫兹器件用GeTe相变材料

GeTe Phase Change Material for Terahertz Devices with Reconfigurable Functionalities Using Optical Activation.

作者信息

Konnikova Maria R, Khomenko Maxim D, Tverjanovich Andrey S, Bereznev Sergei, Mankova Anna A, Parashchuk Olga D, Vasilevsky Ivan S, Ozheredov Ilya A, Shkurinov Alexander P, Bychkov Eugene A

机构信息

Faculty of Physics, Lomonosov Moscow State University, Leninskie Gory, 119991 Moscow, Russia.

ILIT RAS-Branch of the FSRC "Crystallography and Photonics", RAS, 140700 Shatura, Moscow Region, Russia.

出版信息

ACS Appl Mater Interfaces. 2023 Feb 13. doi: 10.1021/acsami.2c21678.

Abstract

The phenomenon of phase change transition has been a fascinating research subject over decades due to a possibility of dynamically controlled materials properties, allowing the creation of optical devices with unique features. The present paper unravels the optical characteristics and terahertz (THz) dielectric permittivity of a novel phase change material (PCM), GeTe, prepared by pulsed laser deposition (PLD) and their remarkable contrast in crystalline and amorphous states, in particular, a difference of 7 orders of magnitude in conductivity. The THz spectra were analyzed using the harmonic oscillator and Drude term. Using GeTe PLD films, we designed and prepared a THz metasurface in the form of periodic structure and revealed a possibility of tuning the THz resonance either by a thermal control or light-induced crystallization response, thus achieving the dynamic and tunable functionality of the metastructure. We propose controlling the state of metasurface by observing the intensity characteristics of the Raman peak of 155 cm. Density functional theory (DFT) modeling demonstrates that in the process of crystallization the mode intensity of 155 cm assigned to Te-Te stretching in amorphous chain fragments decreases and disappears at full crystallization.

摘要

几十年来,相变转变现象一直是一个引人入胜的研究课题,因为其具有动态控制材料特性的可能性,这使得制造具有独特特性的光学器件成为可能。本文揭示了一种通过脉冲激光沉积(PLD)制备的新型相变材料(PCM)——GeTe的光学特性和太赫兹(THz)介电常数,以及它们在晶态和非晶态下的显著差异,特别是电导率相差7个数量级。利用谐波振荡器和德鲁德项对太赫兹光谱进行了分析。我们使用GeTe PLD薄膜设计并制备了周期性结构形式的太赫兹超表面,并揭示了通过热控制或光诱导结晶响应来调节太赫兹共振的可能性,从而实现了亚结构的动态和可调功能。我们建议通过观察155 cm处拉曼峰的强度特征来控制超表面的状态。密度泛函理论(DFT)建模表明,在结晶过程中,非晶链片段中Te-Te拉伸的155 cm模式强度降低,并在完全结晶时消失。

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