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典型文献
Near-field multiple super-resolution imaging from Mikaelian lens to generalized Maxwell's fish-eye lens
文献摘要:
Super-resolution imaging is vital for optical applications,such as high capacity information transmission,real-time bio-molecular imaging,and nanolithography.In recent years,technologies and methods of super-resolution imaging have attracted much attention.Different kinds of novel lenses,from the superlens to the super-oscillatory lens,have been designed and fabricated to break through the diffraction limit.However,the effect of the super-resolution imaging in these lenses is not satisfactory due to intrinsic loss,aberration,large sidebands,and so on.Moreover,these lenses also cannot realize multiple super-resolution imaging.In this research,we introduce the solid immersion mechanism to Mikaelian lens(ML)for multiple super-resolution imaging.The effect is robust and valid for broadband frequencies.Based on conformal transformation optics as a bridge linking the solid immersion ML and generalized Maxwell's fish-eye lens(GMFEL),we also discovered the effect of multiple super-resolution imaging in the solid immersion GMFEL.
文献关键词:
作者姓名:
Yangyang Zhou;Huanyang Chen
作者机构:
Institute of Electromagnetics and Acoustics and Department of Physics,College of Physical Science and Technology,Xiamen University,Xiamen 361005,China
引用格式:
[1]Yangyang Zhou;Huanyang Chen-.Near-field multiple super-resolution imaging from Mikaelian lens to generalized Maxwell's fish-eye lens)[J].中国物理B(英文版),2022(10):171-176
A类:
Mikaelian,superlens,GMFEL
B类:
Near,field,multiple,resolution,imaging,from,generalized,Maxwell,fish,eye,Super,vital,optical,applications,such,high,capacity,information,transmission,bio,molecular,nanolithography,In,recent,years,technologies,methods,have,attracted,much,attention,Different,kinds,novel,lenses,oscillatory,been,designed,fabricated,break,through,diffraction,limit,However,effect,these,satisfactory,due,intrinsic,loss,aberration,large,sidebands,Moreover,also,cannot,realize,this,research,introduce,solid,immersion,mechanism,ML,robust,valid,broadband,frequencies,Based,conformal,transformation,optics,bridge,linking,discovered
AB值:
0.488705
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