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Frequency-agile electromagnetically induced transparency analogue in terahertz metamaterials

  • Quan Xu
  • , Xiaoqiang Su
  • , Chunmei Ouyang
  • , Ningning Xu
  • , Wei Cao
  • , Yuping Zhang
  • , Quan Li
  • , Cong Hu
  • , Jianqiang Gu
  • , Zhen Tian
  • , Abul Kalam Azad
  • , Jiaguang Han
  • , Weili Zhang

Research output: Contribution to journalArticlepeer-review

75 Scopus citations

Abstract

Recently reported active metamaterial analogues of electromagnetically induced transparency (EIT) are promising in developing novel optical components, such as active slow light devices. However, most of the previous works have focused on manipulating the EIT resonance strength at a fixed characteristic frequency and, therefore, realized onto- off switching responses. To further extend the functionalities of the EIT effect, here we present a frequency tunable EIT analogue in the terahertz regime by integrating photoactive silicon into the metamaterial unit cell. A tuning range from 0.82 to 0.74 THz for the EIT resonance frequency is experimentally observed by optical pump-terahertz probe measurements, allowing a frequency tunable group delay of the terahertz pulses. This straightforward approach delivers frequency agility of the EIT resonance and may enable novel ultrafast tunable devices for integrated plasmonic circuits.

Original languageEnglish
Pages (from-to)4562-4565
Number of pages4
JournalOptics Letters
Volume41
Issue number19
DOIs
StatePublished - Oct 1 2016

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