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    • 3. 发明申请
    • MULTI-LAYER THREE DIMENSIONAL NON-LINEAR OPTICAL DATA CARRIER AND METHOD OF RECORDING/READING DATA THEREIN
    • 多层三维非线性光学数据载体及其记录/读取数据的方法
    • WO2007060674A3
    • 2007-07-05
    • PCT/IL2006001371
    • 2006-11-28
    • MEMPILE INCALPERT ORTALSALOMON YAIRRUBINOVICH ILYA
    • ALPERT ORTALSALOMON YAIRRUBINOVICH ILYA
    • G11B7/241G11B7/007G11B7/013G11B7/246
    • G11B7/245B82Y10/00G11B7/013G11B7/24038G11B2007/24624
    • A non-linear optical data carrier is presented. The non-linear optical data carrier is configured for recording therein information defined by a pattern of spaced-apart marks arranged in virtual data layers . The data carrier medium comprises a substance capable of being excited by a first multi-photon interaction to be switched from its first state into a second state, where the first and second states of the substance provide different response signals to a second multi-photon interaction. The substance when in the first and second states have substantially overlapping linear absorption wavelength peaks, and first and second wavelengths involved in the first and second multi-photon processes as well as the response signals wavelengths are outside the linear absorption spectrum peaks of the substance in its first and second states . The basic size of the marks and spaces is larger in the first than in the second layer. Data layers are recorded by monotically changing the focal plane depth of the recording beam.
    • 提出了非线性光数据载体。 非线性光数据载体被配置为在其中记录由布置在虚拟数据层中的间隔开的标记的图案定义的信息。 数据载体介质包括能够被第一多光子相互作用激发以从其第一状态切换到第二状态的物质,其中物质的第一和第二状态向第二多光子相互作用提供不同的响应信号 。 在第一和第二状态中的物质具有基本上重叠的线性吸收波长峰值,并且第一和第二多光子过程中涉及的第一和第二波长以及响应信号波长在物质的线性吸收光谱峰之外 其第一和第二个州。 标记和空格的基本尺寸在第一层比第二层更大。 通过单调地改变记录光束的焦平面深度来记录数据层。
    • 6. 发明申请
    • OPTICAL STORAGE WITH ULTRA HIGH STORAGE CAPACITY
    • 具有超高存储容量的光存储
    • WO2006076035A2
    • 2006-07-20
    • PCT/US2005/018141
    • 2005-05-23
    • CALL/RECALL, INC.WALKER, Edwin, P.ZHANG, YiTAKETOMI, Yoshinao
    • WALKER, Edwin, P.ZHANG, YiTAKETOMI, Yoshinao
    • G11B7/00
    • G11B7/13922B82Y10/00G11B7/0045G11B7/005G11B7/127G11B7/1374G11B7/1395G11B7/24038G11B7/244G11B2007/0013G11B2007/24624
    • Systems, materials, and methods for increasing the storage capacity of optical recording media are provided. In one aspect, the systems of the present invention take advantage of high NA optics to realize ultra high storage capacity. In another aspect, the systems of the present invention include the use of a liquid interface between the recording medium and a liquid interface singlet objective lens to increase storage capacity. The invention also provides for a material system that allows shorter wavelengths to be used for recording and readout. Further, the invention provides for recording methods wherein the wavelength for recording to a medium is longer than the wavelength for reading from the medium. Additionally, the invention includes a multilayer structure for recording media that increases storage capacity. In another aspect of the present invention, high NA optics and related systems and methods are utilized to increase the storage capacity of optical storage systems.
    • 提供了用于增加光学记录介质的存储容量的系统,材料和方法。 在一个方面,本发明的系统利用高NA光学器件实现超高存储容量。 在另一方面,本发明的系统包括在记录介质和液体界面单重物镜之间使用液体界面以增加存储容量。 本发明还提供了允许较短波长用于记录和读出的材料系统。 此外,本发明提供了用于记录到介质的波长比用于从介质读取的波长长的记录方法。 另外,本发明包括用于记录增加存储容量的介质的多层结构。 在本发明的另一方面,利用高NA光学和相关系统和方法来增加光学存储系统的存储容量。
    • 8. 发明申请
    • CREATION OF A PERMANENT STRUCTURE WITH HIGH THREE-DIMENSIONAL RESOLUTION
    • 国土HOCHAUFLELÖSTES产生一个常设机构
    • WO2004090950A2
    • 2004-10-21
    • PCT/EP2004003768
    • 2004-04-08
    • MAX PLANCK GESELLSCHAFTHELL STEFAN
    • HELL STEFAN
    • G03F7/20G11B7/0045G11B7/244G11B7/246H01L21/027
    • G11B7/00455G03F7/70408G11B7/244G11B2007/24624
    • The aim of the invention is to create a permanent structure with high three-dimensional resolution. Said aim is achieved by supplying a substance in a writing zone (7), which can be modified with the aid of an optical signal (5). Said optical signal (5) is applied to the writing area (7) so as to specifically leave out a spatially limited partial area wherein a state (C) of the substance, which is different from the state in the partial areas of the writing zone (7) reached by the optical signal (5), is permanently adjusted. The partial area specifically omitted by the optical signal (5) represents a minimum local intensity (9) of the optical signal (5) while the optical signal (5) is applied outside the specifically omitted spatially limited partial area in such a way that saturation is reached when the substance is modified by means of the optical signal (5). Hence, it is possible to fall below the diffraction limit in the created structure.
    • 对于高空间分辨率产生永久的结构是这样一种物质,其是由一个光信号(5)修改的,在写入区域(7)提供,并且该光信号(5)施加到所述写入区域(7)有一个 该物质中的其他状态(C)在空间上的限制部分区域有目的地省略,如在从光信号(5)记录的写入区域(7)的部分区域永久性地设置。 这里,光信号(5)的选择性省略局部区域的局部强度最小(9)(5),并将该光信号(5)的有意省略了空间上的限制部分区域外部施加的光信号,使得改变与物质时 的光信号(5),所述饱和度得以实现。 通过这种方式,衍射极限可以在生成的结构被超过。