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太赫兹频率下亚波长金属-电介质微腔中的强光-物质耦合

Strong light-matter coupling in subwavelength metal-dielectric microcavities at terahertz frequencies.

作者信息

Todorov Y, Andrews A M, Sagnes I, Colombelli R, Klang P, Strasser G, Sirtori C

机构信息

Laboratoire "Matériaux et Phénomenes Quantiques," Unversité Paris Diderot-Paris 7, CNRS-UMR 7162, 75013 Paris, France.

出版信息

Phys Rev Lett. 2009 May 8;102(18):186402. doi: 10.1103/PhysRevLett.102.186402.

Abstract

We have demonstrated that a metal-dielectric-metal microcavity combined with quantum well intersubband transitions is an ideal system for the generation of cavity polariton states in the terahertz region. The metallic cavity has highly confined radiation modes that can be tuned in resonance with the intersubband transition. In this system we were able to measure a very strong light-matter splitting (the Rabi splitting 2 variant Planck's over 2pi Omega R), corresponding to 22% of the transition energy. We believe this result to be the first demonstration of intersubband polaritons in the terahertz frequency range.

摘要

我们已经证明,金属-电介质-金属微腔与量子阱子带间跃迁相结合,是在太赫兹区域产生腔极化激元态的理想系统。金属腔具有高度受限的辐射模式,可与子带间跃迁调谐共振。在这个系统中,我们能够测量到非常强的光-物质分裂(拉比分裂为2ћΩR,ћ为约化普朗克常数),相当于跃迁能量的22%。我们认为这一结果是太赫兹频率范围内子带间极化激元的首次证明。

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