This work was supported by the National Natural Science Foundation of China(No.61965008);Guangxi Natural Science Foundation(No.AD21220086);Scientific Research Project for Guangxi University(No.2020KY05022);Guangxi Key Laboratory(Nos.YQ21109 and GD21103).
Optical line tweezers have been an efficient tool for the manipulation of large micron particles. In this paper, we propose to create line traps with transformable configurations by using the transverse electromagneti...
the Out standing Youth Science Fund of Hunan Provincial Natural Science Foundation(No.2019JJ20023);the National Natural Science Foundation of China(NSFC)(No.11974427).
We propose here a novel method for position fixing in the micron scale by combining the convolutional neural network(CNN) architecture and speckle patterns generated in a multimode fiber. By varying the splice offset ...
The diffraction of a dielectric microline pair is optimized by numerical simulations to generate an efficient focusing pattern with a micron-scale footprint. Microlines separated by 1.12 μm are fabricated by two-phot...
the University of Malaya for the research funding under LRGS(2015)NGOD/UM/KPT,RU007/2015,and GA010-2014(Professor Ulung)
In this work a passively Q-switched dual-wavelength ytterbium-doped fiber laser using a titanium dioxide-based saturable absorber is proposed and proven. The system also utilizes a side-polished fiber in a ring cavity...