Institut de Ciencies Fotoniques (ICFO), Mediterranean Technology Park, 08860 Castelldefels (Barcelona), Spain.
Science. 2010 Aug 20;329(5994):930-3. doi: 10.1126/science.1191922.
Nanoscale quantum emitters are key elements in quantum optics and sensing. However, efficient optical excitation and detection of such emitters involves large solid angles because their interaction with freely propagating light is omnidirectional. Here, we present unidirectional emission of a single emitter by coupling to a nanofabricated Yagi-Uda antenna. A quantum dot is placed in the near field of the antenna so that it drives the resonant feed element of the antenna. The resulting quantum-dot luminescence is strongly polarized and highly directed into a narrow forward angular cone. The directionality of the quantum dot can be controlled by tuning the antenna dimensions. Our results show the potential of optical antennas to communicate energy to, from, and between nano-emitters.
纳米级量子发射器是量子光学和传感的关键元件。然而,高效的光学激发和探测这种发射器需要大的立体角,因为它们与自由传播的光的相互作用是全方位的。在这里,我们通过耦合到一个纳米制造的八木天线来实现单个发射器的单向发射。量子点被放置在天线的近场中,从而驱动天线的共振馈电元件。由此产生的量子点发光具有强烈的偏振性,并高度定向到一个狭窄的前向角锥内。通过调整天线的尺寸,可以控制量子点的方向。我们的结果表明,光学天线有可能在纳米发射器之间进行能量的传输和通信。