Large three-dimensional photonic crystals based on monocrystalline liquid crystal blue phases

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作者
Chun-Wei Chen
Chien-Tsung Hou
Cheng-Chang Li
Hung-Chang Jau
Chun-Ta Wang
Ching-Lang Hong
Duan-Yi Guo
Cheng-Yu Wang
Sheng-Ping Chiang
Timothy J. Bunning
Iam-Choon Khoo
Tsung-Hsien Lin
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[1] National Sun Yat-sen University,Department of Photonics
[2] The Pennsylvania State University,Department of Electrical Engineering
[3] Air Force Research Laboratory,Materials and Manufacturing Directorate
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Although there have been intense efforts to fabricate large three-dimensional photonic crystals in order to realize their full potential, the technologies developed so far are still beset with various material processing and cost issues. Conventional top-down fabrications are costly and time-consuming, whereas natural self-assembly and bottom-up fabrications often result in high defect density and limited dimensions. Here we report the fabrication of extraordinarily large monocrystalline photonic crystals by controlling the self-assembly processes which occur in unique phases of liquid crystals that exhibit three-dimensional photonic-crystalline properties called liquid-crystal blue phases. In particular, we have developed a gradient-temperature technique that enables three-dimensional photonic crystals to grow to lateral dimensions of ~1 cm (~30,000 of unit cells) and thickness of ~100 μm (~ 300 unit cells). These giant single crystals exhibit extraordinarily sharp photonic bandgaps with high reflectivity, long-range periodicity in all dimensions and well-defined lattice orientation.
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