Vaveliuk Pablo, Martinez-Matos Oscar
Faculdade de Tecnologia, Servicio Nacional de Aprendizagem Industrial SENAI-Cimatec, Salvador, Bahia, Brazil.
Opt Express. 2012 Nov 19;20(24):26913-21. doi: 10.1364/OE.20.026913.
Negative propagation is an unusual effect concerning the local sign change in the Poynting vector components of an optical beam under free propagation. We report this effect for finite-energy Airy beams in a subwavelength nonparaxial regime. This effect is due to a coupling process between propagating and evanescent plane waves forming the beam in the spectral domain and it is demonstrated for a single TE or TM mode. This is contrary to what happens for vector Bessel beams and vector X-waves, for which a complex superposition of TE and TM modes is mandatory. We also show that evanescent waves cannot contribute to the energy flux density by themselves such that a pure evanescent Airy beam is not physically realizable. The break of the shape-preserving and diffraction-free properties of Airy beams in a nonparaxial regime is exclusively caused by the propagating waves. The negative propagation effect in subwavelength nonparaxial Airy beams opens new capabilities in optical traps and tweezers, optical detection of invisibility cloacks and selective on-chip manipulation of nanoparticles.
负向传播是一种在自由传播下光束的坡印廷矢量分量出现局部符号变化的异常效应。我们报道了在亚波长非傍轴区域有限能量艾里光束的这种效应。这种效应是由于在光谱域中构成光束的传播平面波和倏逝平面波之间的耦合过程引起的,并且针对单个TE或TM模式进行了演示。这与矢量贝塞尔光束和矢量X波的情况相反,对于后者,TE和TM模式的复杂叠加是必不可少的。我们还表明,倏逝波本身不能对能量通量密度做出贡献,因此纯倏逝艾里光束在物理上是无法实现的。在非傍轴区域中,艾里光束形状保持和无衍射特性的破坏完全是由传播波引起的。亚波长非傍轴艾里光束中的负向传播效应为光阱和光镊、隐形斗篷的光学检测以及纳米颗粒的片上选择性操纵开辟了新的能力。