Frontiers of Optoelectronics, Volume. 7, Issue 4, 475(2014)

Progress of super-resolution near-field structure and its application in optical data storage

Kui ZHANG1, Yongyou GENG1, Yang WANG1, and Yiqun WU1,2、*
Author Affiliations
  • 1Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
  • 2Key Laboratory of Functional Inorganic Material Chemistry (Heilongjiang University), Ministry of Education, Harbin 150080, China
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    The era of big data has necessitated the use of ultra-high density optical storage devices. Super-resolution near-field structure (super-RENS), which has successfully surpassed the fundamental optical diffraction limit, is one of the promising next generation high-density optical storage technologies. This technology combines the traditional super-resolution optical disk with a near-field structure, and has the advantages of structural simplicity, strong practicability, and, more importantly, compatibility with the current optical storage pickup. The mask layer in super-RENS functions as the key to realizing superresolution. Development of suitable materials and stack designs has greatly been improved in the last decade. This paper described several types of super-RENS, such as aperture-type, light scattering center-type, bubble-type, and other types (e.g., WOx and ZnO), particularly the newly proposed super-RENS technology and research achievements. The paper also reviews the applications of super-RENS in high-density optical data storage in recent years. After analyzing and comparing various types of super-RENS technology, the paper proposes the aperturetype based on the mechanism of nonlinear optics as the most suitable candidate for practical applications in the near future.

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    Kui ZHANG, Yongyou GENG, Yang WANG, Yiqun WU. Progress of super-resolution near-field structure and its application in optical data storage[J]. Frontiers of Optoelectronics, 2014, 7(4): 475

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    Paper Information

    Category: REVIEW ARTICLE

    Received: Feb. 28, 2014

    Accepted: Jun. 25, 2014

    Published Online: Jan. 27, 2015

    The Author Email: WU Yiqun (yqwu@siom.ac.cn)

    DOI:10.1007/s12200-014-0418-2

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