Benisty Henri, Degiron Aloyse, Lupu Anatole, De Lustrac André, Chénais Sébastien, Forget Sébastien, Besbes Mondher, Barbillon Grégory, Bruyant Aurélien, Blaize Sylvain, Lérondel Gilles
Laboratoire Charles Fabry de l'Institut d'Optique, CNRS, Univ. Paris-Sud, Campus Polytechnique, Palaiseau, France.
Opt Express. 2011 Sep 12;19(19):18004-19. doi: 10.1364/OE.19.018004.
The so-called PT symmetric devices, which feature ε((-x)) = ε((x))* associated with parity-time symmetry, incorporate both gain and loss and can present a singular eigenvalue behaviour around a critical transition point. The scheme, typically based on co-directional coupled waveguides, is here transposed to the case of variable gain on one arm with fixed losses on the other arm. In this configuration, the scheme exploits the full potential of plasmonics by making a beneficial use of their losses to attain a critical regime that makes switching possible with much lowered gain excursions. Practical implementations are discussed based on existing attempts to elaborate coupled waveguide in plasmonics, and based also on the recently proposed hybrid plasmonics waveguide structure with a small low-index gap, the PIROW (Plasmonic Inverse-Rib Optical Waveguide).
所谓的PT对称器件,其特征在于与宇称-时间对称相关的ε((-x)) = ε((x))*,它兼具增益和损耗,并且在临界转变点附近会呈现奇异本征值行为。该方案通常基于同向耦合波导,在此被转换到一个臂上增益可变而另一个臂上损耗固定的情况。在这种配置下,该方案通过有益地利用等离子体激元的损耗来充分发挥其潜力,从而达到一种临界状态,使得在增益变化小得多的情况下实现开关成为可能。基于现有的在等离子体激元中精心设计耦合波导的尝试以及基于最近提出的具有小低折射率间隙的混合等离子体激元波导结构——等离子体逆脊光波导(PIROW),讨论了实际实现方式。