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    • 2. 发明申请
    • High-Resolution Optical Information Storage Medium
    • 高分辨率光信息存储介质
    • US20100291338A1
    • 2010-11-18
    • US12526036
    • 2008-02-05
    • Bérangère HyotLudovic PoupinetBernard AndrePatrick Chaton
    • Bérangère HyotLudovic PoupinetBernard AndrePatrick Chaton
    • B32B3/02
    • G11B7/257
    • The invention relates to optical information storage.According to the invention, what is provided is a high-resolution optical information storage structure, comprising a substrate (10) provided with physical marks, the geometric configuration of which defines the information recorded, a superposition of three layers over the top of the marks on the substrate, and a transparent protective layer over the top of this superposition, the superposition comprising an indium antimonide or gallium antimonide layer (14) inserted between two ZnS/SiO2 dielectric layers (12, 16).The information may be prerecorded in the substrate with a resolution (in terms of size and space) better than the theoretical read resolution permitted by the wavelength of the read laser. The non-linearity in behaviour of the three-layer superposition allows the information to be read if the laser power is well chosen.
    • 本发明涉及光信息存储。 根据本发明,提供了一种高分辨率光学信息存储结构,其包括设置有物理标记的基板(10),其几何构型限定记录的信息,在标记的顶部上叠加三层 在该叠加的顶部上的透明保护层,叠加包括插入在两个ZnS / SiO 2电介质层(12,16)之间的锑化铟或锑化镓层(14)。 该信息可以以比读取激光器的波长所允许的理论读取分辨率更高的分辨率(在尺寸和空间上)预先记录在基板中。 如果激光功率被良好选择,则三层叠加的行为的非线性允许读取信息。
    • 3. 发明授权
    • Super-resolution optical recording medium
    • 超分辨率光记录介质
    • US08092887B2
    • 2012-01-10
    • US12062067
    • 2008-04-03
    • Bérangère HyotBernard AndrePierre DesreXavier Biquard
    • Bérangère HyotBernard AndrePierre DesreXavier Biquard
    • B32B3/02
    • G11B7/257B82Y10/00B82Y20/00B82Y30/00Y10T428/21
    • The invention relates to the field of optical information recording. According to the invention, an optical storage structure is proposed comprising a substrate equipped with physical marks whose geometrical configuration defines the recorded information, a superposition of three layers on top of the substrate marks, and a transparent protective layer on top of this superposition, the superposition comprising a layer of indium or gallium antimonide inserted between two ZnS/SiO2 dielectric layers. The antimonide layer has a polycrystalline structure with an average crystal grain size between 5 and 50 nanometers. The non-linear behavior of the superposition of three layers under the read laser makes it possible to read information having a size below the theoretical resolution of the reading system.
    • 本发明涉及光信息记录领域。 根据本发明,提出了一种光学存储结构,其包括具有物理标记的基板,其几何构型限定了记录的信息,在基板标记之上叠加三层,在该叠加顶部具有透明保护层, 叠加包括插入在两个ZnS / SiO 2电介质层之间的铟或镓锑化物层。 锑化物层具有平均晶粒尺寸在5至50纳米之间的多晶结构。 在读取激光下三层叠加的非线性行为使得可以读取尺寸低于读取系统的理论分辨率的信息。
    • 7. 发明授权
    • Device for trapping particles
    • 用于捕获颗粒的装置
    • US08237104B2
    • 2012-08-07
    • US12994447
    • 2009-05-25
    • Delphine NeelStéphane GetinBérangère HyotSalim Mimouni
    • Delphine NeelStéphane GetinBérangère HyotSalim Mimouni
    • H01S1/00
    • G02B21/32
    • A device for trapping particles contained in a liquid (L) placed in a tank, characterized in that it comprises a substrate that is transparent at a working wavelength, a thin layer of material with non-linear optical properties that are reversible at the working wavelength and which is fixed to a first face of the transparent substrate to form all or part of at least one wall of the tank, a device for forming an optical trap which comprises a laser source which emits a laser beam and means for forming a waist of the laser beam, the laser beam being incident upon that face of the transparent substrate that lies on the opposite side to the first face and the waist of the laser beam being formed in the thin layer, an evanescent electromagnetic field forming at the surface of the thin layer.
    • 用于捕获容纳在容纳在液体(L)中的颗粒的装置,其特征在于,其包括在工作波长处是透明的基板,具有非线性光学特性的材料薄层,其在工作波长处是可逆的 并且其固定到透明基板的第一面以形成罐的至少一个壁的全部或一部分,用于形成光阱的装置,其包括发射激光束的激光源和形成腰部的装置 激光束,激光束入射到透明基板的位于与第一面相反的一侧的表面上,激光束的腰部形成在薄层中,在其表面形成ev逝的电磁场 薄层。