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    • 6. 发明申请
    • Broad-Area Microlasers and Methods for Driving Them
    • 广域微型驱动器及其驱动方法
    • US20080247426A1
    • 2008-10-09
    • US11794719
    • 2005-01-07
    • Michael PeetersGuy VerschaffeltHugo ThienpontBart Wattyn
    • Michael PeetersGuy VerschaffeltHugo ThienpontBart Wattyn
    • H01S3/098H01S3/10
    • H01S5/18311H01S5/06216H01S5/0624H01S5/0652H01S5/0653
    • A multi-mode microlaser and a method for driving a multi-mode broad-area microlaser such as a multi-mode VCSEL is described such that the multi-mode microlaser shows an unexpected Gaussian-like far-field intensity distribution. The driving conditions are in general determined such that a strong reduction of the degree of spatial coherence occurs. For square pulsed driving current, these conditions are determined by the pulse duration pd and the pulse height ph. A Gaussian-like far-field intensity distribution is obtained for pulsed multi-mode broad area microlasers. The typical spatial coherence area corresponding with these driving conditions is substantially independent of the Fresnel number of the microlaser. Additionally, this partial spatial coherence can be tuned by changing the driving conditions, such as e.g. the pulse shape and length.
    • 描述多模微型激光器和用于驱动诸如多模式VCSEL的多模式广域微型激光器的方法,使得多模微型激光器显示出意想不到的高斯型远场强度分布。 驱动条件通常被确定为使得发生空间相干度的强烈降低。 对于方波脉冲驱动电流,这些条件由脉冲持续时间p 和脉冲高度p 确定。 对于脉冲多模广域微型激光器获得高斯型远场强度分布。 与这些驱动条件相对应的典型空间相干区域基本上与微激光器的菲涅尔数无关。 另外,这种部分空间相干性可以通过改变驾驶条件来调节,例如, 脉冲形状和长度。
    • 8. 发明授权
    • Verification of process integrity
    • 验证过程完整性
    • US08776247B2
    • 2014-07-08
    • US13059387
    • 2009-08-21
    • Michael PeetersClaude DebastBruno MotteTim Froidcoeur
    • Michael PeetersClaude DebastBruno MotteTim Froidcoeur
    • H04L29/06
    • G06F21/52
    • A system implements a secure transaction of data between a server and a remote device. The remote device comprises: processing means adapted to process input data according to a security process; data storage means adapted to store verification information derived from the input data according to an encryption algorithm; and communication means for communicating the input data which has been processed by the security process to the server. The server is adapted to transmit a verification request to the remote device, and to verify the integrity of the security process based on verification information received from the communication means of the remote device in response to the verification request.
    • 系统在服务器和远程设备之间实现数据的安全事务。 远程设备包括:适于根据安全处理处理输入数据的处理装置; 数据存储装置,其适于存储根据加密算法从所述输入数据导出的验证信息; 以及用于将由安全处理处理的输入数据传送到服务器的通信装置。 服务器适于向远程设备发送验证请求,并且响应于验证请求,基于从远程设备的通信装置接收到的验证信息来验证安全处理的完整性。
    • 9. 发明申请
    • VERIFICATION OF PROCESS INTEGRITY
    • 过程完整性验证
    • US20110203003A1
    • 2011-08-18
    • US13059387
    • 2009-08-21
    • Michael PeetersClaude DebastBruno MotteTim Froidcoeur
    • Michael PeetersClaude DebastBruno MotteTim Froidcoeur
    • G06F21/00
    • G06F21/52
    • A system implements a secure transaction of data between a server and a remote device. The remote device comprises: processing means adapted to process input data according to a security process; data storage means adapted to store verification information derived from the input data according to an encryption algorithm; and communication means for communicating the input data which has been processed by the security process to the server. The server is adapted to transmit a verification request to the remote device, and to verify the integrity of the security process based on verification information received from the communication means of the remote device in response to the verification request.
    • 系统在服务器和远程设备之间实现数据的安全事务。 远程设备包括:适于根据安全处理处理输入数据的处理装置; 数据存储装置,其适于存储根据加密算法从所述输入数据导出的验证信息; 以及用于将由安全处理处理的输入数据传送到服务器的通信装置。 服务器适于向远程设备发送验证请求,并且响应于验证请求,基于从远程设备的通信装置接收到的验证信息来验证安全处理的完整性。