Key Laboratory of Optoelectronic Technology and Systems (Chongqing University), Ministry of Education, and Key Disciplines Lab of Novel Micro-nano Devices and System Technology, Chongqing University, 173 Shazheng Street, Shapingba, Chongqing, 400044, China.
National Center for Nanoscience and Technology, No.11 Zhong Guan CunBei Yi Tiao, Beijing, 100190, China.
Sci Rep. 2017 Jul 5;7(1):4697. doi: 10.1038/s41598-017-05060-2.
Optical hollow beams are suitable for materials processing, optical micromanipulation, microscopy, and optical lithography. However, conventional optical hollow beams are diffraction-limited. The generation of sub-wavelength optical hollow beams using a high numerical aperture objective lens and pupil filters has been theoretically proposed. Although sub-diffraction hollow spot has been reported, nondiffracting hollow beams of sub-diffraction transverse dimensions have not yet been experimentally demonstrated. Here, a planar lens based on binary-phase modulation is proposed to overcome these constraints. The lens has an ultra-long focal length of 300λ. An azimuthally polarized optical hollow needle is experimentally demonstrated with a super-oscillatory transverse size (less than 0.38λ/NA) of 0.34λ to 0.42λ, where λ is the working wavelength and NA is the lens numerical aperture, and a large depth of focus of 6.5λ. For a sub-diffraction transverse size of 0.34λ to 0.52λ, the nondiffracting propagation distance of the proposed optical hollow needle is greater than 10λ. Numerical simulation also reveals a good penetrability of the proposed optical hollow needle at an air-water interface, where the needle propagates through water with a doubled propagation distance and without loss of its super-oscillatory property. The proposed lens is suitable for nanofabrication, optical nanomanipulation, super-resolution imaging, and nanolithography applications.
光学中空光束适用于材料加工、光学微操纵、显微镜和光学光刻等领域。然而,传统的光学中空光束受到衍射限制。使用高数值孔径物镜和瞳孔滤波器产生亚波长光学中空光束的方法已经在理论上提出。尽管已经报道了亚衍射中空光斑,但尚未在实验上演示具有亚衍射横向尺寸的无衍射中空光束。在这里,提出了一种基于二进制相位调制的平面透镜来克服这些限制。该透镜具有超长焦距 300λ。实验演示了一种具有超振荡横向尺寸(小于 0.38λ/NA)的角向偏振光学中空针,其尺寸为 0.34λ 至 0.42λ,其中 λ 为工作波长,NA 为透镜数值孔径,深度焦深为 6.5λ。对于亚衍射横向尺寸为 0.34λ 至 0.52λ,所提出的光学中空针的无衍射传播距离大于 10λ。数值模拟还揭示了所提出的光学中空针在空气-水界面处良好的穿透性,其中针在水中传播时传播距离加倍,并且不会失去其超振荡特性。所提出的透镜适用于纳米制造、光学纳米操纵、超分辨率成像和纳米光刻应用。