太赫兹辐射
光电子学
材料科学
等离子体子
数码产品
光子学
传输(电信)
太赫兹光谱与技术
联轴节(管道)
调制(音乐)
波导管
光子晶体
太赫兹超材料
光学整流
电介质
非凡的光传输
表面等离子体子
光学
作者
Jitao Li,Ke Xu,Maoqing Guo,Lvyi Zhong,Zimou Huang,Zhenhai Wu
摘要
ABSTRACT The transmission and modulation of terahertz (THz) waves play a key role in the THz‐links. The current research on THz transmission‐modulators is no longer limited to free‐space. Due to the advancement of THz sources and detectors, as well as the maturity of micro‐nano process technology, on‐chip electronics and photonics technologies have synchronously migrated to the THz band, thereby promoting research on on‐chip THz transmission‐modulators. We have found that the development of on‐chip THz transmission‐modulators has significantly accelerated in the past decade, giving rise to multiple research directions, including: i) on‐chip THz dielectric waveguides migrated from integrated photonics; ii) THz metal transmission lines developed from electronic technology, as well as metal‐based THz surface plasmon transmission; iii) on‐chip THz photonic crystal systems; iv) on‐chip THz time‐domain systems; v) on‐chip dynamic THz modulation; vi) THz coupling between free‐space and on‐chip; vii) on‐chip THz‐to‐optical conversion, and viii) inverse design of on‐chip THz optoelectronic devices based on machine learning. We provide this immediate and systematic review on the field of on‐chip THz transmission‐modulators, aiming to reflect the state‐of‐the‐art in the integration of electronic and photonics technologies in the THz field, and accelerate the development of on‐chip THz optoelectronic devices.
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