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Planar super-oscillatory lens for sub-diffraction optical needles at violet wavelengths

机译:平面超振荡透镜用于紫光波长下的亚衍射光学针

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摘要

Planar optical lenses are fundamental elements of miniaturized photonic devices. However, conventional planar optical lenses are constrained by the diffraction limit in the optical far-field due to the band-limited wavevectors supported by free-space and loss of high-spatial-frequency evanescent components. As inspired by Einstein's radiation ‘needle stick', electromagnetic energy can be delivered into an arbitrarily small solid angle. Such sub-diffraction optical needles have been numerically investigated using diffractive optical elements (DOEs) together with specially polarized optical beams, but experimental demonstration is extremely difficult due to the bulky size of DOEs and the required alignment precision. Planar super-oscillatory lenses (SOLs) were proposed to overcome these constraints and demonstrated that sub-diffraction focal spots can actually be formed without any evanescent waves, making far-field, label-free super-resolution imaging possible. Here we extend the super-oscillation concept into the vectorial-field regime to work with circularly polarized light, and experimentally demonstrate, for the first time, a circularly polarized optical needle with sub-diffraction transverse spot size (0.45λ) and axial long depth of focus (DOF) of 15λ using a planar SOL at a violet wavelength of 405 nm. This sub-diffraction circularly polarized optical needle has potential applications in circular dichroism spectroscopy, super-resolution imaging, high-density optical storage, heat-assisted magnetic recording, nano-manufacturing and nano-metrology.
机译:平面光学透镜是小型光子器件的基本元件。然而,传统的平面光学透镜由于自由空间支持的带限波矢量和高空间衰逝分量的损失而受到光学远场中衍射极限的约束。受爱因斯坦辐射的“针刺”启发,电磁能可以以任意小的立体角传递。已经使用衍射光学元件(DOE)和特殊偏振光束对这种亚衍射光学针进行了数值研究,但是由于DOE体积庞大和所需的对准精度,因此很难进行实验演示。提出了平面超级振荡透镜(SOL)来克服这些限制,并证明了实际上可以形成亚衍射焦点而没有任何any逝波,从而使远场,无标签的超分辨率成像成为可能。在这里,我们将超振荡概念扩展到矢量场机制中以使用圆偏振光,并首次通过实验演示了具有亚衍射横向光斑尺寸(0.45λ)和轴向长深度的圆偏振光学针使用405 nm紫光波长的平面SOL的15λ聚焦(DOF)的测量这种亚衍射圆偏振光针在圆二色谱,超分辨率成像,高密度光学存储,热辅助磁记录,纳米制造和纳米计量学中具有潜在的应用。

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