会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 5. 发明授权
    • Pressure bleeding boot-type seal
    • 压力出口靴型密封
    • US07097004B2
    • 2006-08-29
    • US10350605
    • 2003-01-24
    • Sean BarrettSeiji NishimuraTakashi Matsumoto
    • Sean BarrettSeiji NishimuraTakashi Matsumoto
    • F16D55/18
    • F16J3/046
    • A boot-type seal having a seal and a valve. The seal has a first seal member, which is configured to sealingly engage a first surface, and a second seal member, which is configured to sealingly engage a second surface. The valve is coupled to the seal and is operable in a first condition, which inhibits fluid communication therethrough, and a second condition, which permits fluid communication therethrough. The condition of the valve changes from the first condition to the second condition in response to a fluid pressure exerted on a side of the seal that exceeds a predetermined threshold pressure. A brake assembly that incorporates the boot-type seal is also provided.
    • 具有密封件和阀门的靴型密封件。 密封件具有密封地接合第一表面的第一密封构件和被配置为密封地接合第二表面的第二密封构件。 阀联接到密封件并且在第一状态下操作,其阻止流体连通,以及允许流体连通通过的第二状态。 响应于施加在密封件的一侧上的流体压力超过预定阈值压力,阀的状态从第一状态改变到第二状态。 还提供了一种结合了靴型密封件的制动组件。
    • 10. 发明申请
    • Methods for determining relative phase differences in entangled quantum states
    • 确定纠缠量子态相对相位差的方法
    • US20070250280A1
    • 2007-10-25
    • US11407600
    • 2006-04-19
    • Raymond BeausoleilWilliam MunroTimothy SpillerPieter KokSean BarrettKae Nemoto
    • Raymond BeausoleilWilliam MunroTimothy SpillerPieter KokSean BarrettKae Nemoto
    • G06F19/00
    • B82Y10/00G06N99/002
    • Various embodiments of the present invention are directed to methods for determining a phase shift acquired by an entangled N-qubit system represented by a NOON state. In one embodiment, a probe electromagnetic field is coupled with each qubit system. The phase shift acquired by the qubit systems is transferred to the probe electromagnetic field by transforming each qubit-system state into a linear superposition of qubit basis states. An intensity measurement is performed on the probe electromagnetic field in order to obtain a corresponding measurement result. A counter associated with a measurement-result interval is incremented, based on the measurement result falling within the measurement-result interval. A frequency distribution is produced by normalizing the counter associated with each measurement-result interval for a number of trials. The phase shift is determined by fitting a probability distribution associated with the probe electromagnetic field to the frequency distribution as a function of the phase shift.
    • 本发明的各种实施例涉及用于确定由NOON状态表示的纠缠的N量子比特系统获取的相移的方法。 在一个实施例中,探测电磁场与每个量子位系统耦合。 通过将每个量子位系统状态转换为量子位基状态的线性叠加,由量子位系统获取的相移被传送到探测电磁场。 对探头电磁场进行强度测量,以获得相应的测量结果。 基于测量结果间隔内的测量结果,与测量结果间隔相关联的计数器增加。 通过对与多个试验的每个测量结果间隔相关联的计数器进行归一化来产生频率分布。 通过将与探测电磁场相关联的概率分布拟合为频率分布来确定相移作为相移的函数。