S. BagianteFlorian EnderliJustyna FabiańskaH. SiggT. Feurer
Abstract Today's pulsed THz sources enable us to excite, probe and coherently control the vibrational or rotational dynamics of organic and inorganic materials on ultrafast time scales. Driven by standard laser sources THz electric field strengths of up to several MVm −1 have been reported and in order to reach even higher electric field strengths the use of dedicated electric field enhancement structures has been proposed. Here, we demonstrate resonant electric field enhancement structures, which concentrate the incident electric field in sub-diffraction size volumes and show an electric field enhancement as high as ~14,000 at 50 GHz. These values have been confirmed through a combination of near-field imaging experiments and electromagnetic simulations.
Bagiante, S.Enderli, FlorianFabiańska, J.Sigg, H.Feurer, Thomas
Yinghui RenXiaogang WangChijie Xiao
Yinghui RenXiaogang WangChangyan Xiao
Yinghui RenXiaogang WangChangyan Xiao
J. S. AhnTaehee KangDilip K. SinghYoung‐Mi BahkHyunhwa LeeSoo Bong ChoiDai‐Sik Kim