太赫兹辐射
超材料
光电子学
慢光
光学
光子学
太赫兹间隙
等离子体子
电磁感应透明
微波食品加热
半导体
太赫兹光谱与技术
材料科学
电磁辐射
超材料吸收剂
照相混合
物理
太赫兹超材料
远红外激光器
激光器
光子晶体
可调谐超材料
量子力学
出处
期刊:Applied Optics
[Optica Publishing Group]
日期:2018-01-24
卷期号:57 (4): 722-722
被引量:59
摘要
Compared to the neighboring infrared and microwave regions, the terahertz regime is still in need of fundamental technological advances. We have designed a terahertz (THz) semiconductor metamaterial (MM) waveguide system, which exhibits a significant slow-light effect, based on a classical electromagnetically induced transparency phenomenon. The potential of MMs for THz radiation originates from a resonant electromagnetic response that can be tailored for specific applications. By appropriately adjusting the distance between the two radiative and nonradiative modes, a flat band corresponding to a nearly constant group index (of the order of 4924) in the THz regime can be achieved. Finite-difference time-domain simulations show that the incident pulse can be slowed down. The proposed device from a paucity of naturally occurring materials has useful applications in electronic or photonic properties at terahertz frequencies. This proposed compact configuration may find potential applications in plasmonic slow-light systems, optical buffers, and thermal and electromagnetic modulating applications and temperature sensors.
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