首页> 外文会议>SPIE Conference on Nanoimaging and Nanospectroscopy >Super resolution mapping of the near optical field and the gradient optical force
【24h】

Super resolution mapping of the near optical field and the gradient optical force

机译:近光场和梯度光力的超分辨率映射

获取原文

摘要

We have developed a NSOM technique that can map both the near optical field and the optical force using an atomic force microscope. This technique could be very useful for characterizing MEMs/NEMs devices, plasmonic nanoantennas, nano-photonic devices and biologically active substrates. Unlike conventional NSOM techniques that rely on an aperture fabricated on the end of an AFM tip to collect the optical signal this apertureless technique uses a lockin amplifier locked to the AFM tip vibrational frequency, to correlate the amplitude modulation of the back reflected optical signal to the strength of the optical field. And since we are not limited by the fabrication of an aperture the spatial resolution of the map is limited only by the size of a sharp AFM tip which for metallic coated tips can have a radius of curvature of 10 to 20 mn. For optical force mapping the incident laser is modulated and the lock-in amplifier is used to correlate the amplitude modulation of the vibrating AFM tip to strength of the optical gradient force. And in this way one can get a very accurate mapping of both the optical force and the optical field for any substrate of interest as long as it can be back illuminated. Lastly with an electrically monolithic substrate it is possible to correlate the amplitude modulation of the tunneling current to the optical field and obtain a spatial mapping that has a resolution of an STM, about 1 mn or maybe less.
机译:我们开发了一种NSOM技术,可以使用原子力显微镜映射近光场和光学力。该技术对于表征MEMS / NEMS装置,等离子体纳米烯烃,纳米光子器件和生物活性基材非常有用。与依赖于AFM尖端的末端制造的孔径的传统NSOM技术不同,这种不可避难的技术使用锁定到AFM尖端振动频率的锁定放大器,以将后反射光信号的幅度调制相关联到光场的强度。并且由于我们不受孔的制造限制,因此地图的空间分辨率仅受到金属涂覆尖端的尖锐AFM尖端的尺寸的限制,该尖端可以具有10至20mN的曲率半径。对于光学力映射映射入射激光器,并且锁定放大器用于将振动AFM尖端的幅度调制与光学梯度力的强度相关联。以这种方式,只要它可以回到照亮,可以获得任何感兴趣的基板的光学力和光学场的非常精确的映射。最后用电单片基板将隧道电流的幅度调制与光学领域相关联,并获得具有STM的分辨率的空间映射,约1mN或更小。

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