Active Terahertz Nanoantennas Based on VO2 Phase Transition

  • Seo, Minah
  • Kyoung, Jisoo
  • Park, Hyeongryeol
  • Koo, Sukmo
  • Kim, Hyun-Sun
  • 외 9명
Citations

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358
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379

초록

Unusual performances of metamaterials such as negative index of refraction, memory effect, and cloaking originate from the resonance features of the metallic composite atom(1-6). Indeed, control of metamaterial properties by changing dielectric environments of thin films below the metallic resonators has been demonstrated(7-11). However, the dynamic control ranges are still limited to less than a factor of 10(7-11) with the applicable bandwidth defined by the sharp resonance features. Here, we present ultra-broad-band metamaterial thin film with colossal dynamic control range, fulfilling present day research demands. Hybridized with thin VO2 (vanadium dioxide)(12-18) films, nanoresonator supercell arrays designed for one decade of spectral width in terahertz frequency region show an unprecedented extinction ratio of over 10000 when the underlying thin film experiences a phase transition. Our nanoresonator approach realizes the full potential of the thin film technology for long wavelength applications.

키워드

Terahertz spectroscopyphase transition devicenanoantennaterahertz active deviceterahertz VO2NEAR-FIELDOPTICAL-TRANSMISSIONTHIN-FILMSSPECTROSCOPYMETAMATERIALSTEMPERATUREENHANCEMENTPOLARIZERDEVICESLIGHT
제목
Active Terahertz Nanoantennas Based on VO2 Phase Transition
저자
Seo, MinahKyoung, JisooPark, HyeongryeolKoo, SukmoKim, Hyun-SunBernien, HannesKim, Bong JunChoe, Jong HoAhn, Yeong HwanKim, Hyun-TakPark, NamkyooPark, Q-HanAhn, KwangjunKim, Dai-sik
DOI
10.1021/nl1002153
발행일
2010-06
유형
Article
저널명
Nano Letters
10
6
페이지
2064 ~ 2068