Broadband terahertz generation and detection at 10 nm scale

  • Ma, Y.
  • Huang, M.
  • Ryu, S.
  • Bark, C.W.
  • Eom, C.-B.
  • 외 2명
Citations

WEB OF SCIENCE

26
Citations

SCOPUS

31

초록

Terahertz (0.1-30 THz) radiation reveals a wealth of information that is relevant for material, biological, and medical sciences with applications that span chemical sensing, high-speed electronics, and coherent control of semiconductor quantum bits. To date, there have been no methods capable of controlling terahertz (THz) radiation at molecular scales. Here we report both generation and detection of broadband terahertz field from 10 nm scale oxide nanojunctions. Frequency components of ultrafast optical radiation are mixed at these nanojunctions, producing broadband THz emission. These same devices detect THz electric fields with comparable spatial resolution. This unprecedented control, on a scale of 4 orders of magnitude smaller than the diffraction limit, creates a pathway toward THz-bandwidth spectroscopy and control of individual nanoparticles and molecules. © 2013 American Chemical Society.

키워드

nanoscale photoconductivityOptical rectificationoxide nanostructureTHz fieldFrequency componentsHigh-speed electronicsIndividual nanoparticlesNano scaleOptical rectificationsOxide nanostructuresTHz fieldsWealth of informationBiological materialsDiffractionElectric fieldsMoleculesTerahertz spectroscopyTerahertz waves
제목
Broadband terahertz generation and detection at 10 nm scale
저자
Ma, Y.Huang, M.Ryu, S.Bark, C.W.Eom, C.-B.Irvin, P.Levy, J.
DOI
10.1021/nl401219v
발행일
2013-06
유형
Article
저널명
Nano Letters
13
6
페이지
2884 ~ 2888