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Terahertz Wave Properties of Ceramic Photonic Crystals with Graded Structure Fabricated by Using Micro-stereolithography

机译:微立体光刻技术制备梯度结构陶瓷光子晶体的太赫兹波特性

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Fabrication and terahertz wave properties of alumina micro photonic crystals with a diamond structure were investigated. The three-dimensional diamond structure was designed on a computer using 3D-CAD software. Acrylic diamond structures with alumina particles dispersion were formed by using micro-stereolithography. Fabricated precursors were dewaxed and sintered in the air. The electromagnetic wave properties were measured by terahertz time-domain spectroscopy. A complete photonic band gap was observed at the frequency range from 0.40 to 0.47 THz, and showed good agreement with the simulation results calculated by the plane wave expansion method. Moreover, a localized mode was obtained by introducing a plane defect between twinned diamond structures. The one-way transmission of the electromagnetic wave was realized by using this twinned photonic crystal with the graded diamond structure. They corresponded to the simulation by the transmission line modeling (TLM) method.
机译:研究了具有金刚石结构的氧化铝微光子晶体的制备和太赫兹波特性。使用3D-CAD软件在计算机上设计了三维钻石结构。通过使用微立体光刻法形成具有氧化铝颗粒分散体的丙烯酸金刚石结构。将制造的前体在空气中脱蜡并烧结。电磁波特性通过太赫兹时域光谱法测量。在0.40至0.47 THz的频率范围内观察到一个完整的光子带隙,并且与通过平面波扩展方法计算的模拟结果吻合良好。此外,通过在孪晶金刚石结构之间引入平面缺陷来获得局部模式。通过使用具有渐变钻石结构的孪生光子晶体,实现了电磁波的单向传输。它们对应于传输线建模(TLM)方法的仿真。

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