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    • 1. 发明申请
    • AUTHENTICATION
    • 认证
    • WO2010070345A1
    • 2010-06-24
    • PCT/GB2009/051727
    • 2009-12-17
    • INGENIA HOLDINGS (UK) LIMITEDCOWBURN, Russell, PaulSEEM, Peter
    • COWBURN, Russell, PaulSEEM, Peter
    • G07D7/12G07D7/20
    • G07D7/121G07D7/2033
    • The present invention can provide an apparatus operable to determine a signature from an article arranged in a reading volume. The apparatus can comprise a generator operable to generate and sequentially direct a focussed noncoherent beam onto each of a plurality of different regions of the reading volume;a detector arrangement operable to collect a set comprising groups of data points from signals obtained when the beam scatters from the different regions of the reading volume, wherein different ones of the groups of data points relate to scatter from the respective different regions of the reading volume; and a data acquisition and processing module operable to determine a signature of the article from the set of groups of data points.
    • 本发明可以提供一种可操作以从布置在阅读体积中的物品确定签名的装置。 该装置可以包括发生器,其可操作以产生并顺序地将聚焦的非相干光束引导到读取体积的多个不同区域中的每一个上;检测器装置,可操作以从当从光束散射时获得的信号收集包括数据点组的集合 所述读取体积的不同区域,其中所述数据点组中的不同组涉及从所述阅读体积的各个不同区域的散射; 以及数据获取和处理模块,用于从所述一组数据点确定所述物品的签名。
    • 2. 发明申请
    • MAGNETIC DATA STORAGE DEVICE WITH MAGNETIC DOMAIN WALL MOTION
    • 磁性数据存储设备,具有磁性域运动
    • WO2010055333A1
    • 2010-05-20
    • PCT/GB2009/051513
    • 2009-11-11
    • INGENIA HOLDINGS (UK) LIMITEDCOWBURN, Russell Paul
    • COWBURN, Russell Paul
    • G11C11/14G11C19/08G11C11/155
    • G11C11/14B82Y10/00G11C11/155G11C19/0816
    • A data storage device comprises an array of parallel magnetic nanowires each having a uniaxial anisotropy with an easy axis substantially perpendicular to the longitudinal axis of the nanowire and which is rotated about the longitudinal axis along the length of the nanowire, and a magnetisation state that follows the easy axis, where each nanowire has a data input element for nucleating magnetic domains separated by domain walls in an end of the nanowire, the sequence of domains and walls representing binary data, and a data read-out element operable to detect the magnetisation at an end of the nanowire, the device also comprising a magnetic field source operable to generate a magnetic field rotating in a plane substantially perpendicular to the longitudinal axes of the nanowires so as to propagate domain walls along the at least one nanowire. Reversal of the direction of rotation of the magnetic field reverses the propagation direction of the domain walls, so that data can be moved in either direction along the nanowires.
    • 数据存储装置包括平行磁纳米线阵列,每个阵列具有单轴各向异性,其易轴基本上垂直于纳米线的纵向轴线,并且沿着纳米线的长度围绕纵向轴线旋转,并且随后的磁化状态 容易的轴,其中每个纳米线具有数据输入元件,用于使纳米线末端中的域壁分离的磁畴成核,代表二进制数据的畴和序列,以及数据读出元件,其可操作以检测磁化 纳米线的端部,该器件还包括磁场源,其可操作以产生在基本上垂直于纳米线的纵向轴线的平面中旋转的磁场,以沿着至少一个纳米线传播畴壁。 反转磁场的旋转方向反转畴壁的传播方向,使得数据可以沿着纳米线沿任一方向移动。
    • 3. 发明申请
    • DATA STORAGE DEVICE AND METHOD
    • 数据存储设备和方法
    • WO2008139131A1
    • 2008-11-20
    • PCT/GB2008/001116
    • 2008-03-31
    • INGENIA HOLDINGS (UK) LIMITEDCOWBURN, Russell, PaulPETIT, DorotheeREAD, Dan
    • COWBURN, Russell, PaulPETIT, DorotheeREAD, Dan
    • G11C19/08
    • G11C11/14G11C19/08G11C19/0816
    • A serial magnetic mass storage device and associated data storage method is provided based on magnetic nanowires that support single magnetic domains separated by domain walls. Each data-storing nanowire has a plurality of crossing nanowires along its length, forming cross junctions that constitute domain wall pinning sites. Data is fed through each data-storing nanowire by moving the magnetic domains under the action of a field that alternates between alignment and anti-alignment with the crossing nanowires. The data is encoded in the chirality of the domain walls, with up and down chirality transverse domain walls being used to encode 0's and 1's. Data is clocked into each nanowire with suitable nucleation generators capable of nucleating domains with domain walls of pre-defined chirality. Data is clocked out of each nanowire with suitable magnetic field sensors that sense the chirality.
    • 基于支撑由畴壁分离的单个磁畴的磁性纳米线提供串行磁性大容量存储装置和相关数据存储方法。 每个数据存储纳米线沿其长度具有多个交叉的纳米线,形成构成畴壁钉扎位点的交叉连接点。 通过在对准和交叉纳米线之间交替的场的作用下移动磁畴,将数据馈送通过每个数据存储纳米线。 数据以域壁的手性编码,上下手势横向域壁用于编码0和1。 数据通过合适的成核发生器计时到每个纳米线中,该成核发生器能够使具有预定义手性的畴壁成核结构域。 数据由每个纳米线的时钟输出,使用感应手性的合适的磁场传感器。