首页> 外文会议>ICN 2013 >Hybrid Plasmonic Nanodevices: Switching Mechanism For The Nonlinear Emission
【24h】

Hybrid Plasmonic Nanodevices: Switching Mechanism For The Nonlinear Emission

机译:混合等离子体纳米型:非线性发射的切换机构

获取原文

摘要

Control of the light emission at the nanoscale is of central interest in nanophotonics due to the many applications in very different fields, ranging from quantum information to biophysics. Resonant excitation of surface plasmon polaritons in metal nanoparticles create nanostructured and enhanced light fields around those structures, which produce their strong interaction in a hybrid nanodevice with other plasmonic or non-plasmonic objects. This interaction may in turn also modulate the far field with important consequences in the applications. We show in this paper that the nonlinear emission from semiconductor quantum dots is strongly affected by the close presence of metal nanoparticles, which are resonantly excited. Using a pulsed laser, optical second harmonic is generated in the quantum dot, and it is highly enhanced when the laser is tuned around the nanoparticle plasmon resonance. Even more interesting is the demonstration of a switching mechanism, controlled by an external continuous-wave field, which can enhance or extinguish the SH signal, even when the pulsed laser is always on. Experimental observations are in excellent agreement with the theoretical calculations, based on the dipole-dipole near-field coupling of the objects forming the hybrid system.
机译:在纳米尺度上的光发射的控制是在纳米光子学中央感兴趣的由于在非常不同的领域中的许多应用,从量子信息生物物理学。在金属纳米颗粒表面等离子体激元的共振激发创建纳米结构和增强的周围的那些结构的光场,它产生与其它等离子体激元或者非等离激元的对象的混合纳米器件的强烈的相互作用。这种相互作用可能反过来也与应用的重要后果调制远场。我们表明在本文中,从半导体量子点的非线性发射的强烈影响由金属纳米粒子,其被共振地激发的密切存在。使用脉冲激光,光学二次谐波在量子点中产生,并且当激光围绕纳米颗粒等离子体激元共振调谐强烈增强。甚至更有趣的是一个切换机构,通过外部连续波场控制,这可以增强或熄灭SH信号,即使当脉冲激光总是在示范。实验观察结果与理论计算良好的协议,基于近场的偶极 - 偶极形成混合动力系统中的对象的连接。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号