Yuan Guang Hui, Vezzoli Stefano, Altuzarra Charles, Rogers Edward Tf, Couteau Christophe, Soci Cesare, Zheludev Nikolay I
The Photonics Institute, Centre for Disruptive Photonic Technologies, Nanyang Technological University, Singapore 637371, Singapore.
CINTRA, CNRS-NTU-Thales, CNRS UMI 3288, Singapore 637553, Singapore.
Light Sci Appl. 2016 Aug 26;5(8):e16127. doi: 10.1038/lsa.2016.127. eCollection 2016 Aug.
Super-oscillation is a counterintuitive phenomenon describing localized fast variations of functions and fields that happen at frequencies higher than the highest Fourier component of their spectra. The physical implications of this effect have been studied in information theory and optics of classical fields, and have been used in super-resolution imaging. As a general phenomenon of wave dynamics, super-oscillations have also been predicted to exist in quantum wavefunctions. Here we report the experimental demonstration of super-oscillatory behavior of a single-quantum object, a photon. The super-oscillatory behavior is demonstrated by tight localization of the photon wavefunction after focusing with an appropriately designed slit mask to create an interference pattern with a sub-diffraction hotspot (~0.45 ). Such quantum super-oscillation can be used for low-intensity far-field super-resolution imaging techniques even down to single-photon counting regime, which would be of interest to quantum physics and non-invasive and label-free biological studies.
超振荡是一种违反直觉的现象,它描述了函数和场在高于其频谱最高傅里叶分量的频率上发生的局部快速变化。这种效应的物理意义已在信息论和经典场光学中得到研究,并已用于超分辨率成像。作为波动动力学的一种普遍现象,超振荡也被预测存在于量子波函数中。在此,我们报告了单个量子物体——一个光子的超振荡行为的实验演示。通过用适当设计的狭缝掩模聚焦后光子波函数的紧密定位来证明超振荡行为,以创建具有亚衍射热点(~0.45 )的干涉图案。这种量子超振荡可用于低强度远场超分辨率成像技术,甚至低至单光子计数 regime,这将对量子物理学以及非侵入性和无标记生物学研究具有重要意义。