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    • 37. 发明授权
    • Optical-based, self-authenticating quantum random number generators
    • 基于光的,自认证的量子随机数发生器
    • US07849121B2
    • 2010-12-07
    • US11546158
    • 2006-10-10
    • Marco FiorentinoRaymond G. BeausoleilCharles Santori
    • Marco FiorentinoRaymond G. BeausoleilCharles Santori
    • G06F7/58
    • G06F7/588B82Y10/00G06N99/002H04L9/0662H04L9/0858H04L9/32
    • Various embodiments of the present invention are directed to methods and systems for generating random numbers. In one embodiment, a quantum random number generator comprises: a state generator configured to generate a quantum system in a coherent state; a polarization states analyzer configured to project the quantum system onto one of four different polarization states, and detect each of the four different polarization states; a raw bit generator configured to convert the quantum system into a single photon and detect the single photon in either a first polarization state that corresponds to a first binary number or a second polarization state that corresponds to a second binary number; and a system control configured to receive signals from the polarization states analyzer and the raw bit generator, the signals corresponding to the polarization states, and output a random number based on the first and second polarization states of the single photon.
    • 本发明的各种实施例涉及用于产生随机数的方法和系统。 在一个实施例中,量子随机数发生器包括:状态发生器,被配置为产生处于相干状态的量子系统; 偏振状态分析器被配置为将量子系统投影到四种不同偏振状态中的一种,并且检测四种不同偏振状态中的每一种; 原始比特发生器被配置为将量子系统转换成单个光子并且以对应于对应于第二二进制数的第一二进制数或第二偏振态的第一偏振状态检测单个光子; 以及系统控制,被配置为从所述偏振状态分析器和所述原始比特发生器接收信号,所述信号对应于所述偏振状态,并且基于所述单个光子的所述第一和第二偏振态输出随机数。
    • 40. 发明申请
    • Free space WDM signal detector
    • 自由空间WDM信号检测器
    • US20090027658A1
    • 2009-01-29
    • US11881557
    • 2007-07-27
    • Raymond G. BeausoleilWei WuDavid A. FattalMarco Fiorentino
    • Raymond G. BeausoleilWei WuDavid A. FattalMarco Fiorentino
    • G01N21/00
    • H04B10/1121
    • A system can include a transmitter that produces an optical signal having a plurality of carrier frequencies and a receiver separated from the transmitter by free space through which the optical signal propagates. The receiver includes an array of detectors of multiple types, with the types being capable of detecting light respectively having the carrier frequencies. A location of an incident area where the optical signal is incident on the detector array generally depends on a misalignment of the receiver relative to the transmitter, but the detectors in the detector array are arranged so that at least one detector of each of the types detects light from the optical signal regardless of where the incident area is on the detector array.
    • 系统可以包括产生具有多个载波频率的光信号的发射机,以及通过光信号传播的自由空间与发射机分离的接收机。 该接收机包括多种类型的检测器阵列,其类型能够检测分别具有载波频率的光。 光信号入射在检测器阵列上的入射区域的位置通常取决于接收器相对于发射器的未对准,但检测器阵列中的检测器被布置成使得每种类型的至少一个检测器检测 来自光信号的光,而不管入射面积在检测器阵列上的哪里。