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    • 5. 发明授权
    • Quantum repeater and system and method for creating extended entanglements
    • 量子中继器以及用于创建扩展纠缠的系统和方法
    • US08781334B2
    • 2014-07-15
    • US13319372
    • 2009-10-26
    • William MunroKeith HarrisonTimothy SpillerKae Nemoto
    • William MunroKeith HarrisonTimothy SpillerKae Nemoto
    • H04B10/00
    • H04L9/0855B82Y10/00G06N99/002H04B10/70H04L2209/38
    • An iterative method is provided for progressively building an end-to-end entanglement between qubits in first and second end nodes (91, 92) of a chain of nodes whose intermediate nodes (90) are quantum repeaters. At each iteration, a current operative repeater (90) of the chain merges an entanglement existing between qubits in the first end node (91) and the operative repeater, with a local entanglement formed between qubits in the operative repeater and its neighbor node towards the second end node (92). For the first iteration, the operative repeater is the neighbor of the first end node (91); thereafter, for each new iteration the operative repeater shifts one node further along the chain toward the second end node (92). A quantum repeater adapted for implementing this method is also provided.
    • 提供了一种迭代方法,用于逐渐构建中间节点(90)是量子中继器的节点链的第一和第二端节点(91,92)中的量子比特之间的端到端纠缠。 在每次迭代中,链路的当前可操作中继器(90)将存在于第一端节点(91)中的量子位与可操作中继器之间的纠缠与在可操作中继器中的量子比特和其邻居节点之间形成的局部纠缠相结合 第二端节点(92)。 对于第一次迭代,操作中继器是第一端节点(91)的邻居; 此后,对于每个新的迭代,可操作中继器沿着链条进一步向第二端节点(92)移动一个节点。 还提供了适用于实现该方法的量子中继器。
    • 6. 发明申请
    • QKD System Alignment
    • QKD系统对齐
    • US20090310784A1
    • 2009-12-17
    • US12469571
    • 2009-05-20
    • Joanna DuligallKeith HarrisonWilliam MunroTimothy SpillerRadu Ionicioiu
    • Joanna DuligallKeith HarrisonWilliam MunroTimothy SpillerRadu Ionicioiu
    • H04L9/18H04L9/08
    • H04B10/1141H04L9/0852
    • QKD receiving apparatus is provided with an alignment-correction system for correcting misalignment of a quantum signal received at an optical port of the apparatus relative to a quantum-signal detector of the receiving apparatus. The alignment-correction system comprises a misalignment measuring subsystem for making multiple different misalignment measures, and a misalignment compensation subsystem for adjusting the relative alignment of the quantum signal and quantum-signal detector in dependence on the misalignment measures made. The misalignment measuring subsystem comprises an alignment-beam source, an alignment-beam detector arrangement, and optical components for guiding an alignment beam from the alignment-beam source to the optical port, and for guiding the alignment beam, after external retro-reflection at a cooperating QKD transmitting apparatus from the optical port to the alignment-beam detector arrangement.
    • QKD接收装置设置有对准校正系统,用于校正在装置的光口处接收的量子信号相对于接收装置的量子信号检测器的未对准。 对准校正系统包括用于进行多个不同对准测量的未对准测量子系统,以及用于根据所做的不对准测量来调整量子信号和量子信号检测器的相对对准的未对准补偿子系统。 不对准测量子系统包括对准束源,对准束检测器装置和用于将对准光束从对准光束源引导到光学端口的光学部件,并且用于在外部后向反射之后引导对准光束 从光端口到对准束检测器装置的协作QKD发送装置。
    • 7. 发明申请
    • Quantum Repeater And System And Method For Creating Extended Entanglements
    • 量子中继器和系统以及创建扩展纠缠的方法
    • US20120134675A1
    • 2012-05-31
    • US13319372
    • 2009-10-26
    • William MunroKeith HarrisonTimothy SpillerKae Nemoto
    • William MunroKeith HarrisonTimothy SpillerKae Nemoto
    • H04J14/00
    • H04L9/0855B82Y10/00G06N99/002H04B10/70H04L2209/38
    • An iterative method is provided for progressively building an end-to-end entanglement between qubits in first and second end nodes (91, 92) of a chain of nodes whose intermediate nodes (90) are quantum repeaters. At each iteration, a current operative repeater (90) of the chain merges an entanglement existing between qubits in the first end node (91) and the operative repeater, with a local entanglement formed between qubits in the operative repeater and its neighbour node towards the second end node (92). For the first iteration, the operative repeater is the neighbour of the first end node (91); thereafter, for each new iteration the operative repeater shifts one node further along the chain toward the second end node (92). A quantum repeater adapted for implementing this method is also provided.
    • 提供了一种迭代方法,用于逐渐构建中间节点(90)是量子中继器的节点链的第一和第二端节点(91,92)中的量子比特之间的端到端纠缠。 在每次迭代中,链的当前可操作中继器(90)将存在于第一端节点(91)中的量子位与可操作中继器之间的纠缠与在可操作中继器中的量子比特和其邻居节点之间形成的局部纠缠相结合 第二端节点(92)。 对于第一次迭代,操作中继器是第一端节点(91)的邻居; 此后,对于每个新的迭代,可操作中继器沿着链条进一步向第二端节点(92)移动一个节点。 还提供了适用于实现该方法的量子中继器。
    • 10. 发明申请
    • Method and system using one-time pad data to evidence the possession of a particular attribute
    • 使用一次性垫数据的方法和系统证明拥有特定属性
    • US20070101410A1
    • 2007-05-03
    • US11523868
    • 2006-09-19
    • Keith HarrisonWilliam MunroMartin Sadler
    • Keith HarrisonWilliam MunroMartin Sadler
    • H04L9/32
    • H04L9/0656H04L9/0852H04L9/3226H04L2209/127H04L2209/56H04L2209/80
    • A method and system are provided for evidencing to a first entity, such as a visa-checking authority, that a second entity, such as a traveller, possesses a particular attribute, such as right of entry to a specific country. The method involves a preliminary phase of verifying that the second entity has the attribute of interest; associating that attribute with a first one-time pad held by the first entity; and arranging for the second entity to possess a second one-time pad that is at least a subset of the first one-time pad. Thereafter, when the second entity wishes to prove to the first entity that it has the attribute of interest, it passes evidence data derived from the second one-time pad to the first entity. The first entity can then check for the presence, in the first one-time pad, of data matching, or usable to produce, the evidence data.
    • 提供了一种方法和系统,用于向第一实体(例如签证机构)证明第二实体(例如旅行者)具有特定属性,诸如进入特定国家的权利。 该方法涉及验证第二实体具有感兴趣属性的初步阶段; 将该属性与由第一实体持有的第一个一次性贴图相关联; 以及安排所述第二实体拥有至少是所述第一一次性焊盘的子集的第二一次性焊盘。 此后,当第二实体希望向第一实体证明其具有感兴趣的属性时,它将从第二一次性衬垫导出的证据数据传递给第一实体。 然后,第一实体可以检查在第一次一次性垫中存在数据匹配或可用于产生证据数据的存在。