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Tunable anisotropy in ReS_2 flakes achieved by Ar~+ ion bombardment probed by polarized Raman spectroscopy

机译:通过AR〜+离子轰击通过偏振拉曼光谱探测的AR〜+离子轰击的可调谐各向异性

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摘要

Crystal-orientation-dependent properties in low symmetric two-dimensional material ReS_2 have inspired its novel applications in photonics, electronics, and optoelectronics. In this work, Ar~+ ion bombardment is used to treat ReS_2 with different thicknesses, and different amounts of defect densities are introduced in ReS_2 flakes. Angular dependent polarized Raman spectra is used to probe the change in anisotropy. The intensities of mode V exhibit maximum and minimum intensities with incident polarization along the b-axis and perpendicular. The intensity ratio I_(min)/I_(max) is used as a quantity to detect the change in anisotropy. It is found that with the same defect density, the change in anisotropy in 1-layer (L) ReS_2 is the highest among ReS_2 flakes; thus, 1L ReS_2 is susceptible to ion bombardment. With an increase in the defect density in 1L ReS_2, an increase in the I_(min)/I_(max) value is observed. A phenomenological model is established to understand the quantitative relationship between defect density and anisotropy, and the isotropic scattering range associated with defects is obtained. The results here provide ways of quantitatively understanding anisotropy by angular polarized Raman spectroscopy as well as ways of tuning anisotropy in two-dimensional anisotropic materials by ion bombardments.
机译:低对称二维材料中的晶体取向依赖性Res_2在光子,电子设备和光电子中启发了其新的应用。在这项工作中,AR〜+离子轰击用于处理具有不同厚度的RES_2,并且在RES_2薄片中引入了不同量的缺陷密度。角度依赖性偏振拉曼光谱用于探测各向异性的变化。模式V的强度展示了沿B轴的入射极化和垂直的最大和最小强度。强度比i_(min)/ i_(max)用作检测各向异性变化的数量。结果发现,具有相同的缺陷密度,1层(L)RES_2中的各向异性的变化是RES_2薄片中的最高;因此,1L RES_2易受离子轰击的影响。随着1L RES_2中的缺陷密度的增加,观察到I_(min)/ i_(max)值的增加。建立了一种现象学模型,以了解缺陷密度和各向异性之间的定量关系,获得与缺陷相关的各向同性散射范围。这里的结果提供了通过角度偏振拉曼光谱的定量理解各向异性的方法,以及通过离子轰击调节二维各向异性材料中的各向异性的方式。

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  • 来源
    《Applied Physics Letters》 |2021年第5期|053104.1-053104.7|共7页
  • 作者单位

    Department of Optoelectronic Science Harbin Institute of Technology at Weihai Weihai 264209 China;

    Department of Optoelectronic Science Harbin Institute of Technology at Weihai Weihai 264209 China;

    School of Marine Science and Technology Harbin Institute of Technology at Weihai Weihai 264209 China;

    School of Materials Science and Engineering Dalian Jiaotong University Dalian 116028 China;

    Department of Optoelectronic Science Harbin Institute of Technology at Weihai Weihai 264209 China;

    School of Materials Science and Engineering Harbin Institute of Technology at Weihai Weihai 264209 China;

    Department of Optoelectronic Science Harbin Institute of Technology at Weihai Weihai 264209 China;

    Department of Physics Southeast University Nanjing 211189 China;

    Department of Physics Southeast University Nanjing 211189 China;

    Department of Optoelectronic Science Harbin Institute of Technology at Weihai Weihai 264209 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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