Bitzer Andreas, Ortner Alex, Merbold Hannes, Feurer Thomas, Walther Markus
Institute of Applied Physics, University of Bern, Sidlerstr 5, CH-3012 Bern, Switzerland.
Opt Express. 2011 Jan 31;19(3):2537-45. doi: 10.1364/OE.19.002537.
Using terahertz near-field imaging we experimentally investigate the resonant electromagnetic field distributions behind a split-ring resonator and its complementary structure with sub-wavelength spatial resolution. For the out-of-plane components we experimentally verify complementarity of electric and magnetic fields as predicted by Babinet's principle. This duality of near-fields can be used to indirectly map resonant magnetic fields close to metallic microstructures by measuring the electric fields close to their complementary analogues which is particularly useful since magnetic near-fields are still extremely difficult to access in the THz regime. We find excellent agreement between the results from theory, simulation and two different experimental near-field techniques.
利用太赫兹近场成像技术,我们通过实验研究了裂环谐振器及其互补结构后方具有亚波长空间分辨率的共振电磁场分布。对于面外分量,我们通过实验验证了巴比涅原理所预测的电场和磁场的互补性。这种近场的对偶性可用于通过测量靠近其互补类似物的电场来间接绘制靠近金属微结构的共振磁场,这特别有用,因为在太赫兹频段中,磁性近场仍然极难获取。我们发现理论、模拟结果与两种不同的实验近场技术所得结果之间具有高度一致性。