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    • 2. 发明授权
    • Image display apparatus with getter scattering prevention
    • 具有防吸气剂散射的图像显示装置
    • US5925979A
    • 1999-07-20
    • US768472
    • 1996-12-18
    • Hiroo AzumaKohei NakataMasaaki Ogura
    • Hiroo AzumaKohei NakataMasaaki Ogura
    • H01J29/94H01J31/12H01J1/54
    • H01J29/94H01J2201/3165H01J2209/385H01J2329/00
    • An image display apparatus which is subjected to getter flashing during manufacturing, for the purpose of increasing the degree of vacuum in the air-tight container thereof, is provided with a getter scattering prevention member comprised of a plurality of getter scattering prevention walls. The getter scattering prevention walls prevent getter material from scattering to the image display portion of the image display apparatus, while allowing for smooth conductance of gas in the air-tight container during evacuation. Thus, evacuation by the getter can be further improved by increasing the area to which getter adheres to, deterioration of the image quality can be prevented by not allowing getter to adhere to the image display portion, the air-tight container can be evacuated in a shorter time, irregularities in brightness of the screen due to uneven pressure within the display portion can be done away with, and a higher degree of vacuum can be attained. Consequently, an image display apparatus with good image quality and a long life expectancy is provided
    • 为了增加其气密容器内的真空度而在制造过程中进行吸气剂闪光的图像显示装置设置有由多个防吸气剂散射壁组成的防吸气剂散射构件。 吸气剂散射防止壁防止吸气剂材料散射到图像显示装置的图像显示部分,同时允许排气期间气密容器中气体的平滑电导。 因此,通过增加吸气剂附着的面积可以进一步提高吸气剂的排气,可以通过不允许吸气剂粘附到图像显示部分来防止图像质量的劣化,气密性容器可以在 更短的时间内,由于显示部分内的不均匀的压力,屏幕亮度的不规则性可以被消除,并且可以获得更高的真空度。 因此,提供了具有良好图像质量和长寿命的图像显示装置
    • 3. 发明申请
    • Quantum-state-generating apparatus, Bell measurement apparatus, quantum gate apparatus, and method for evaluating fidelity of quantum gate
    • 量子态发生装置,贝尔测量装置,量子门装置和用于评估量子门保真度的方法
    • US20050133780A1
    • 2005-06-23
    • US10812461
    • 2004-03-29
    • Hiroo Azuma
    • Hiroo Azuma
    • G06N99/00H01L29/06
    • G06N99/002B82Y10/00
    • An apparatus for generating a quantum state of a two-qubit system including two qubits, each qubit being represented by a particle which invariably travels through one of two paths, includes a quantum gate composed of an interferometer for implementing an-interaction-free measurement. The apparatus receives two particles having no correlation and generates a Bell state with asymptotic probability 1. A Bell measurement of a state of a two-qubit system is performed by observing a quantum gate composed of the interferometer after the quantum gate has processed the state and selecting the state from the Bell bases. An approximate fidelity of a quantum gate composed of the interferometer is calculated, if an absorption probability with which a first particle absorbs a second particle in the interferometer is less than 1, under the condition that the number of times the second particle hits beam splitters in the interferometer is sufficiently large.
    • 一种用于产生包括两个量子位的双量子位系统的量子态的装置,每个量子位由总是通过两条路径之一的粒子表示,包括由用于实现无交互测量的干涉仪组成的量子门。 该装置接收两个没有相关性的粒子,并产生具有渐近概率1的贝尔状态。在量子门处理状态之后,通过观察由干涉仪组成的量子门来执行双量子位系统的状态的贝尔测量, 从贝尔基地选择状态。 计算由干涉仪构成的量子门的近似保真度,如果第一粒子吸收干涉仪中的第二粒子的吸收概率小于1,则在第二粒子撞击分束器的次数 干涉仪足够大。
    • 4. 发明授权
    • Quantum-state-generating apparatus, Bell measurement apparatus, quantum gate apparatus, and method for evaluating fidelity of quantum gate
    • 量子态发生装置,贝尔测量装置,量子门装置和用于评估量子门保真度的方法
    • US07180645B2
    • 2007-02-20
    • US10812461
    • 2004-03-29
    • Hiroo Azuma
    • Hiroo Azuma
    • G06E1/04G06E3/00
    • G06N99/002B82Y10/00
    • An apparatus for generating a quantum state of a two-qubit system including two qubits, each qubit being represented by a particle which invariably travels through one of two paths, includes a quantum gate composed of an interferometer for implementing an-interaction-free measurement. The apparatus receives two particles having no correlation and generates a Bell state with asymptotic probability 1. A Bell measurement of a state of a two-qubit system is performed by observing a quantum gate composed of the interferometer after the quantum gate has processed the state and selecting the state from the Bell bases. An approximate fidelity of a quantum gate composed of the interferometer is calculated, if an absorption probability with which a first particle absorbs a second particle in the interferometer is less than 1, under the condition that the number of times the second particle hits beam splitters in the interferometer is sufficiently large.
    • 一种用于产生包括两个量子位的双量子位系统的量子态的装置,每个量子位由总是通过两条路径之一的粒子表示,包括由用于实现无交互测量的干涉仪组成的量子门。 该装置接收两个没有相关性的粒子,并产生具有渐近概率1的贝尔状态。在量子门处理状态之后,通过观察由干涉仪组成的量子门来执行双量子位系统的状态的贝尔测量, 从贝尔基地选择状态。 计算由干涉仪构成的量子门的近似保真度,如果第一粒子吸收干涉仪中的第二粒子的吸收概率小于1,则在第二粒子撞击分束器的次数 干涉仪足够大。
    • 6. 发明授权
    • Image display apparatus
    • 图像显示装置
    • US06486600B1
    • 2002-11-26
    • US09348671
    • 1999-07-06
    • Hiroo AzumaKohei NakataMasaaki Ogura
    • Hiroo AzumaKohei NakataMasaaki Ogura
    • H01J1724
    • H01J29/94H01J2201/3165H01J2209/385H01J2329/00
    • An image display apparatus which is subjected to getter flashing during manufacturing, for the purpose of increasing the degree of vacuum in the air-tight container thereof, is provided with a getter scattering prevention member comprised of a plurality of getter scattering prevention walls. The getter scattering prevention walls prevent getter material from scattering to the image display portion of the image display apparatus, while allowing for smooth conductance of gas in the air-tight container during evacuation. Thus, evacuation by the getter can be further improved by increasing the area to which getter adheres to, deterioration of the image quality can be prevented by not allowing getter to adhere to the image display portion, the air-tight container can be evacuated in a shorter time, irregularities in brightness of the screen due to uneven pressure within the display portion can be done away with, and a higher degree of vacuum can be attained. Consequently, an image display apparatus with good image quality and a long life expectancy is provided.
    • 为了增加其气密容器内的真空度而在制造过程中进行吸气剂闪光的图像显示装置设置有由多个防吸气剂散射壁组成的防吸气剂散射构件。 吸气剂散射防止壁防止吸气剂材料散射到图像显示装置的图像显示部分,同时允许排气期间气密容器中气体的平滑电导。 因此,通过增加吸气剂附着的面积可以进一步提高吸气剂的排气,可以通过不允许吸气剂粘附到图像显示部分来防止图像质量的劣化,气密性容器可以在 更短的时间内,由于显示部分内的不均匀的压力,屏幕亮度的不规则性可以被消除,并且可以获得更高的真空度。 因此,提供了具有良好图像质量和长寿命的图像显示装置。