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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Study on the Tunneling Mode in a Sub-Wavelength Open-Cavity Resonator Consisting of Single Negative Materials
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Study on the Tunneling Mode in a Sub-Wavelength Open-Cavity Resonator Consisting of Single Negative Materials

机译:由单一负材料组成的亚波长开腔谐振器中的隧穿模式研究

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We have investigated the process which establishes the tunneling mode in a conjugately matched pair consisting of $varepsilon$-negative (ENG) and $mu$-negative (MNG) materials in theory and experiment. The one-dimensional conjugately matched pairs is realized by two L-C loaded transmission lines and the dynamical behavior of the transmitted signal along the pair is measured and recorded on an oscilloscope. It is found that the field does not decay to zero in a finite length single negative material and the average power flow is a constant since the phase difference between electric field and magnetic field varies with the position. While for a conjugately matched ENG/MNG pair, the incident field attenuates in ENG material in the first instance and then the fields are rapidly enhanced at the ENG-MNG interface and reach the steady state due to the resonating effect of the structure. It is revealed that there is a combination of travelling wave and reactive standing wave inside the bilayer with the ratio between them varying with the position. It is also proved that the bilayer can also be treated as an open resonator, in which the charging up characteristic time is in proportion to the Q factor of the structure.
机译:我们已经在理论和实验上研究了在由$ varepsilon $-负(ENG)和$ mu $-负(MNG)材料组成的共轭匹配对中建立隧穿模式的过程。一维共轭匹配对通过两条加载有L-C的传输线来实现,并且沿该对测量传输信号的动态行为,并将其动态记录在示波器上。发现在有限长度的单个负材料中,磁场不会衰减到零,并且平均功率流是恒定的,因为电场和磁场之间的相位差会随位置而变化。对于共轭匹配的ENG / MNG对,入射场首先在ENG材料中衰减,然后由于结构的共振效应,场在ENG-MNG界面处迅速增强并达到稳态。结果表明,双层内部存在行波和反应性驻波的组合,两者之比随位置而变化。还证明了双层也可以被视为开放谐振器,其中充电特征时间与结构的Q因子成比例。

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