论文标题

在光激发超材料中,强球对等离子体引起的不透明度的控制

Strong-Field Terahertz Control of Plasmon Induced Opacity in Photoexcited Metamaterial

论文作者

Mousavian, Ali, Thompson, Zachary J., Lee, Byounghwak, Bradley, Alden N., Sprague, Milo X., Lee, Yun-Shik

论文摘要

由辐射插槽天线和亚基互补的分裂谐振器组成的Terahertz的底层质量在狭窄的光谱范围内表现出等离子体引起的不透明度,这是由于耦合振荡器的明亮和黑暗模式之间的破坏性干扰。飞秒的光激发立即淬灭模式耦合和等离子振荡,将光载体注入超材料。耦合的超材料中的等离子共振通过强烈的Terahertz脉冲瞬时恢复。强烈的Terahertz田地诱导了光电训练的间隔散射和带间隧道,并显着降低了光载体迁移率。非线性THZ相互作用的超快动力学揭示了光载体和等离子振荡之间的复杂相互作用。对等离子体振荡的高田THZ控制意味着对超速等离震态的潜在应用。

A terahertz metamaterial consisting of radiative slot antennas and subradiant complementary split-ring resonators exhibits plasmon induced opacity in a narrow spectral range due to the destructive interference between the bright and dark modes of the coupled oscillators. Femtosecond optical excitations instantly quench the mode coupling and plasmon oscillations, injecting photocarriers into the metamaterial. The plasmon resonances in the coupled metamaterial are transiently restored by intense terahertz pulses. The strong terahertz fields induce intervalley scattering and interband tunneling of the photocarries, and achieve significant reduction of the photocarrier mobility. The ultrafast dynamics of the nonlinear THz interactions reveals intricate interplay between photocarriers and plasmon oscillations. The high-field THz control of the plasmon oscillations implies potential applications to ultrahigh-speed plasmonics.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源