Kim Hyunmin, Bryant Garnett W, Stranick Stephan J
National Institute of Standards and Technology, Gaithersburg, Maryland 20899, USA.
Opt Express. 2012 Mar 12;20(6):6042-51. doi: 10.1364/OE.20.006042.
We report on the development of a superresolution four-wave mixing microscope with spatial resolution approaching 130 nm which represents better than twice the diffraction limit at 800 nm while retaining the ability to acquire materials- and chemical- specific contrast. The resolution enhancement is achieved by narrowing the microscope's excitation volume in the focal plane through the combined use of a Toraldo-style pupil phase filter with the multiplicative nature of four-wave mixing.
我们报道了一种超分辨率四波混频显微镜的研制,其空间分辨率接近130纳米,在800纳米波长下优于两倍的衍射极限,同时保留了获取材料和化学特异性对比度的能力。通过结合使用托拉尔多式光瞳相位滤波器和四波混频的乘法特性,在焦平面上缩小显微镜的激发体积,从而实现了分辨率的提高。