太赫兹辐射
材料科学
电介质
超材料
氧化钇钡铜
布鲁斯特角
光学
极化(电化学)
超导电性
光电子学
相位调制
凝聚态物理
布鲁斯特
高温超导
物理
相位噪声
物理化学
化学
作者
Kandammathe Valiyaveedu Sreekanth,P. Mahalakshmi,Song Han,Vigneswaran Dhasarathan,M.S. Mani Rajan,Rajan Jha,Ranjan Singh
摘要
Active polarization switching devices are important to control the polarization state of light including terahertz (THz) waves that are technologically challenging to manipulate. Here, we propose and numerically demonstrate a hyperbolic metamaterial-based (HMM-based) active Brewster polarization switch for the intensity and phase modulation of THz light. The proposed multilayered HMM consists of alternating thin layers of high temperature superconductors such as yttrium barium copper oxide and dielectric materials such as lanthanum aluminate. The HMM shows elliptical dispersion above the superconducting phase transition temperature and type II hyperbolic dispersion in the superconducting state. By varying the temperature from the dielectric to the superconducting phase of the HMM, we demonstrate above 98% THz intensity modulation and 100% phase tunability (180°) at Brewster’s angle. The proposed HMM can work as an efficient reflective THz modulator by properly selecting the angle of incidence.
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