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    • 1. 发明申请
    • Optical-based, self-authenticating quantum random number generators
    • 基于光的,自认证的量子随机数发生器
    • US20070260658A1
    • 2007-11-08
    • US11407513
    • 2006-04-20
    • Marco FiorentinoWilliam MunroRaymond BeausoleilSean SpillaneCharles Santori
    • Marco FiorentinoWilliam MunroRaymond BeausoleilSean SpillaneCharles Santori
    • G06F7/58G06F1/02
    • G06F7/588B82Y10/00G06N99/002H04L9/0662H04L9/32
    • Various embodiments of the present invention are directed optical-based quantum random number generators. In one embodiment, a quantum random number generator includes an input state generator that generates a first optical quantum system and a second optical quantum system in an entangled state, a detector that measures the state of the first optical quantum system and the state of the second optical quantum system, and a system control that evaluates a result obtained from measuring the state of the first optical quantum system and state of the second optical quantum system to determine whether or not to append a number associated with the result to the sequence of random numbers. The quantum random number generator also include state controllers, located between the input state generator and the detector, that are operationally controlled by the system control to maintain the entangled state, based on results obtained from previous measurements performed on the first and second optical quantum systems.
    • 本发明的各种实施例是针对基于光学的量子随机数发生器。 在一个实施例中,量子随机数发生器包括产生处于纠缠状态的第一光量子系统和第二光量子系统的输入状态发生器,测量第一光量子系统的状态的检测器和第二光量子系统的状态 光学量子系统和评估从第一光学量子系统的状态和第二光学量子系统的状态得到的结果的系统控制,以确定是否将与结果相关联的数字附加到随机数序列 。 量子随机数生成器还包括位于输入状态发生器和检测器之间的状态控制器,其基于从先前在第一和第二光学量子系统上执行的测量获得的结果,由系统控制来操作地控制以维持纠缠状态 。
    • 3. 发明授权
    • Compact systems for generating polarization-entangled photons
    • 用于产生极化纠缠光子的紧凑型系统
    • US07639953B2
    • 2009-12-29
    • US11494815
    • 2006-07-27
    • Sean SpillaneCharles SantoriMarco FiorentinoRaymond G. Beausoliel
    • Sean SpillaneCharles SantoriMarco FiorentinoRaymond G. Beausoliel
    • H04B10/02
    • G02B27/28B82Y10/00B82Y20/00G02B1/005G02B27/286G02F1/39G06N99/002H04L9/0858
    • Various embodiments of the present invention are directed to compact systems for generating polarization-entangled photons. In one embodiment of the present invention, a non-degenerate, polarization-entangled photon source comprises a half-wave plate that outputs both a first pump beam and a second pump beam, and a first beam displacer that directs the first pump beam into a first transmission channel and the second pump beam into a second transmission channel. A down-conversion device converts the first pump beam into first signal and idler photons and converts the second pump beam into second signal and idler photons. A second beam displacer directs both the first signal and idler photons and the second signal and idler photons into a single transmission channel. A dichroic mirror directs the first and second signal photons to a first fiber optic coupler and the first and second idler photons to a second fiber optic coupler.
    • 本发明的各种实施例涉及用于产生偏振纠缠光子的紧凑系统。 在本发明的一个实施例中,非简并极化纠缠光子源包括输出第一泵浦光束和第二泵浦光束的半波片,以及将第一泵浦光束引导到第一泵浦光束的第一光束置换器 第一传输通道和第二泵浦波束进入第二传输通道。 下变换装置将第一泵浦光束转换成第一信号和惰轮光子,并将第二泵浦光束转换成第二信号和惰轮光子。 第二光束置换器将第一信号和惰轮光子以及第二信号和惰轮光子两者导向单个传输信道。 二向色镜将第一和第二信号光子引导到第一光纤耦合器,并将第一和第二惰轮光子引导到第二光纤耦合器。
    • 8. 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
    • US07844649B2
    • 2010-11-30
    • US11407513
    • 2006-04-20
    • Marco FiorentinoWilliam J. MunroRaymond G. BeausoleilSean SpillaneCharles Santori
    • Marco FiorentinoWilliam J. MunroRaymond G. BeausoleilSean SpillaneCharles Santori
    • G06F7/58
    • G06F7/588B82Y10/00G06N99/002H04L9/0662H04L9/32
    • Various embodiments of the present invention are directed optical-based quantum random number generators. In one embodiment, a quantum random number generator includes an input state generator that generates a first optical quantum system and a second optical quantum system in an entangled state, a detector that measures the state of the first optical quantum system and the state of the second optical quantum system, and a system control that evaluates a result obtained from measuring the state of the first optical quantum system and state of the second optical quantum system to determine whether or not to append a number associated with the result to the sequence of random numbers. The quantum random number generator also include state controllers, located between the input state generator and the detector, that are operationally controlled by the system control to maintain the entangled state, based on results obtained from previous measurements performed on the first and second optical quantum systems.
    • 本发明的各种实施例是针对基于光学的量子随机数发生器。 在一个实施例中,量子随机数发生器包括产生处于纠缠状态的第一光量子系统和第二光量子系统的输入状态发生器,测量第一光量子系统的状态的检测器和第二光量子系统的状态 光学量子系统和评估从第一光学量子系统的状态和第二光学量子系统的状态得到的结果的系统控制,以确定是否将与结果相关联的数字附加到随机数序列 。 量子随机数生成器还包括位于输入状态发生器和检测器之间的状态控制器,其基于从先前在第一和第二光学量子系统上执行的测量获得的结果,由系统控制来操作地控制以维持纠缠状态 。