Wu Hongya, Zhou Ji, Lan Chuwen, Guo Yunsheng, Bi Ke
State Key Laboratory of New Ceramic and Fine Processing, School of Materials Science and Engineering, Tsinghua University, Beijing 100084, China.
Sci Rep. 2014 Jun 30;4:5499. doi: 10.1038/srep05499.
Memristor exhibit interesting and valuable circuit properties and have thus become the subject of increasing scientific interest. Scientists wonder if they can conceive a microwave memristor that behaves as a memristor operating with electromagnetic fields. Here, we report a microwave memristive-like nonlinear phenomenon at room temperature in dielectric metamaterials consisting of CaTiO3-ZrO2 ceramic dielectric cubes. Hysteretic transmission-incident field power loops (similar to the hysteretic I-V loop of memristor which is the fingerprint of memristor) with various characteristics were systematically observed in the metamaterials, which exhibited designable microwave memristive-like behavior. The effect is attributed to the decreasing permittivity of the dielectric cubes with the increasing temperature generated by the interaction between the electromagnetic waves and the dielectric cubes. This work demonstrates the feasibility of fabrication transient photonic memristor at microwave frequencies with metamaterials.
忆阻器具有有趣且有价值的电路特性,因此越来越受到科学界的关注。科学家们想知道他们是否能构思出一种能在电磁场中运行的微波忆阻器。在此,我们报告了在由CaTiO3-ZrO2陶瓷介电立方体组成的介电超材料中,室温下出现的一种类似微波忆阻的非线性现象。在超材料中系统地观察到了具有各种特性的滞后传输-入射场功率回路(类似于忆阻器的滞后I-V回路,这是忆阻器的特征),其表现出可设计的类似微波忆阻的行为。这种效应归因于电磁波与介电立方体相互作用产生的温度升高导致介电立方体的介电常数降低。这项工作证明了用超材料在微波频率下制造瞬态光子忆阻器的可行性。