太赫兹辐射
材料科学
光电子学
金属-绝缘体过渡
兴奋剂
蓝宝石
二氧化二钒
相变
钨
调幅
光学
激光器
薄膜
频率调制
金属
无线电频率
凝聚态物理
纳米技术
物理
电信
冶金
计算机科学
作者
Gulten Karaoglan-Bebek,Md Nadim Ferdous Hoque,M. Holtz,Zhaoyang Fan,A. A. Bernussi
摘要
Vanadium dioxide (VO2), with its characteristic metal-insulator phase transition, is a prospective active candidate to realize tunable optical devices operating at terahertz (THz) frequencies. However, the abrupt phase transition restricts its practical use in analog-like continuous applications. Incorporation of tungsten is a feasible approach to alter the phase transition properties of thin VO2 films. We show that amplitude THz modulation depth of ∼65%, characteristic phase transition temperature of ∼40 °C, and tuning range larger than 35 °C can be achieved with W-doped VO2 films grown on sapphire substrates. W-doped VO2 films can also be used to suppress Fabry-Perot resonances at THz frequencies but at temperatures much lower than that observed for undoped VO2 films. The gradual phase transition temperature window allows for precise control of the W-doped VO2 optical properties for future analog based THz devices.
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