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    • 51. 发明申请
    • Methods and Apparatus for System Monitoring
    • 系统监控方法与装置
    • US20130113616A1
    • 2013-05-09
    • US13292178
    • 2011-11-09
    • Florian PinelLarisa ShwartzLiang Tang
    • Florian PinelLarisa ShwartzLiang Tang
    • G08B23/00
    • G06Q10/0631
    • Improved systems and techniques for identification and resolution of conditions affecting an information technology system. When an alert is received, it is identified as actionable or non-actionable and, if non-actionable, is subjected to a waiting time before a trouble ticket is created. If the alert has cleared by the time the waiting time expires, an event associated with the alert is discarded and no trouble ticket is created. Non-actionable alerts are identified using a system of predictive rules, with rules being generated according to appropriate criteria, such as the likelihood that an event identified by a rule will be non-actionable, and by the likelihood that an event will be identified by a rule.
    • 改进用于识别和解决影响信息技术系统的条件的系统和技术。 当接收到警报时,它被识别为可操作的或不可操作的,并且如果不可操作,则在创建故障单之前经受等待时间。 如果在等待时间到期之后警报已经清除,则与该警报相关联的事件将被丢弃,并且不会创建故障单。 使用预测规则系统识别不可操作的警报,其中规则根据适当的标准生成,例如由规则识别的事件将是不可操作的可能性,以及事件将由 一个规则。
    • 52. 发明申请
    • Method for Improving Metallic Nanostructure Stability
    • 改善金属纳米结构稳定性的方法
    • US20130077036A1
    • 2013-03-28
    • US13434548
    • 2012-03-29
    • Akinori HashimuraLiang TangDavid R. Evans
    • Akinori HashimuraLiang TangDavid R. Evans
    • B05D5/12G02F1/1343
    • G02F1/167B05D5/12G02F1/1334G02F1/13439G02F1/23G02F2202/36G02F2203/10G02F2203/34
    • A method is provided for improving metallic nanostructure stability. The method provides a substrate, and using a physical vapor deposition (PVD) process for example, deposits metallic nanostructures having a first diameter overlying the substrate. Some examples of metallic nanostructures include Ag, Au, and Al. The metallic nanostructures are annealed in an atmosphere including an inert gas and H2. The annealing temperature is less than the melting temperature the metal material in bulk form. In response to the annealing, stabilized metallic nanostructures are formed. If the stabilized metallic nanostructures are exposed to an ambient air environment the stabilized metallic nanostructure maintain the first diameter. Typically, the metallic nanostructures are initially formed having a rectangular shape with corners. After annealing, the stabilized metallic nanostructures have a dome shape.
    • 提供了一种提高金属纳米结构稳定性的方法。 该方法提供基底,并且例如使用物理气相沉积(PVD)工艺沉积具有覆盖在基底上的第一直径的金属纳米结构。 金属纳米结构的一些实例包括Ag,Au和Al。 金属纳米结构在包括惰性气体和H 2的气氛中退火。 退火温度小于块状形式的金属材料的熔融温度。 响应于退火,形成稳定的金属纳米结构。 如果稳定的金属纳米结构暴露于环境空气环境,则稳定的金属纳米结构保持第一直径。 通常,金属纳米结构最初形成为具有角部的矩形形状。 退火后,稳定的金属纳米结构具有圆顶形状。
    • 55. 发明授权
    • Plasmonic device tuned using physical modulation
    • 使用物理调制调谐的等离子体装置
    • US08223425B2
    • 2012-07-17
    • US12646585
    • 2009-12-23
    • Akinori HashimuraLiang TangApostolos T. Voutsas
    • Akinori HashimuraLiang TangApostolos T. Voutsas
    • G02B26/00
    • G02F1/23G02F1/19G02F2203/10
    • A plasmonic display device is provided that uses physical modulation mechanisms. The device is made from an electrically conductive bottom electrode and a first dielectric layer overlying the bottom electrode. The first dielectric layer is a piezoelectric material having an index of expansion responsive to an electric field. An electrically conductive top electrode overlies the first dielectric layer. A first plasmonic layer, including a plurality of discrete plasmonic particles, is interposed between the top and bottom electrodes and in contact with the first dielectric layer. In one aspect, the plasmonic particles are an expandable polymer material covered with a metal coating having a size responsive to an electric field.
    • 提供了使用物理调制机制的等离子体显示装置。 该器件由导电底部电极和覆盖底部电极的第一电介质层制成。 第一电介质层是具有响应于电场的扩展指数的压电材料。 导电顶电极覆盖在第一电介质层上。 包括多个离散等离子体激元的第一等离子体激元层介于顶电极和底电极之间并与第一电介质层接触。 在一个方面,等离子体激元粒子是覆盖有对电场有响应尺寸的金属涂层的可膨胀聚合物材料。
    • 56. 发明申请
    • Touch-Enabled Plasmonic Reflective Display
    • 触摸式等离子体反射显示器
    • US20120139958A1
    • 2012-06-07
    • US13157225
    • 2011-06-09
    • Liang TangAkinori HashimuraApostolos T. Voutsas
    • Liang TangAkinori HashimuraApostolos T. Voutsas
    • G09G5/10
    • G02F1/0128G02F1/13338G02F1/19G02F2001/13345G02F2203/10G02F2203/34G06F3/0412
    • An electrical pressure-sensitive reflective display includes an array of display pixels, each with a transparent top surface, first electrode, second electrode, an elastic polymer medium, and metallic nanoparticles distributed in the elastic polymer medium. When a first voltage potential is applied between the first and second electrodes of each display pixel, a first color is reflected from the incident spectrum of light, assuming no pressure is applied on the top surface of each display pixel. When the top surface of a first display pixel is deformed in response to an applied pressure, the elastic polymer medium in the first display pixel is compressed, decreasing the metallic nanoparticle-to-metallic nanoparticle mean distance in the first display pixel. In response to decreasing the metallic nanoparticle-to-metallic nanoparticle mean distance, the color reflected from the incident spectrum of light by the second display pixel is changed from the first color to second color.
    • 电压敏反射显示器包括显示像素阵列,每个显示像素具有分布在弹性聚合物介质中的透明顶表面,第一电极,第二电极,弹性聚合物介质和金属纳米颗粒。 当在每个显示像素的第一和第二电极之间施加第一电压电位时,假设在每个显示像素的顶表面上没有施加压力,第一颜色从光的入射光谱反射。 当第一显示像素的顶表面响应于所施加的压力而变形时,第一显示像素中的弹性聚合物介质被压缩,从而降低第一显示像素中金属纳米颗粒与金属纳米颗粒的平均距离。 响应于减少金属纳米颗粒 - 金属纳米颗粒平均距离,由第二显示像素的入射光谱反射的颜色从第一颜色变为第二颜色。
    • 58. 发明申请
    • Color-Tunable Plasmonic Device with a Partially Modulated Refractive Index
    • 具有部分调制折射率的可调色等离子体装置
    • US20110109854A1
    • 2011-05-12
    • US12614368
    • 2009-11-06
    • Liang TangAkinori HashimuraApostolos T. Voutsas
    • Liang TangAkinori HashimuraApostolos T. Voutsas
    • G02F1/1335
    • G02F1/195G02F2203/10
    • A color-tunable plasmonic device is provided with a partially modulated refractive index. A first dielectric layer overlies a bottom electrode, and has a refractive index non-responsive to an electric field. A second dielectric layer overlies the first dielectric layer, having a refractive index responsive to an electric field. An electrically conductive top electrode overlies the second dielectric layer. A plasmonic layer including a plurality of discrete plasmonic particles is interposed between the top and bottom electrodes. In one aspect, the plasmonic layer is interposed between the first and second dielectric layers. In a second aspect, the plasmonic layer is interposed between the first dielectric layer and the bottom electrode. In a third aspect, a first plasmonic layer is interposed between the first dielectric layer and the bottom electrode, and a second plasmonic layer of discrete plasmonic particles is interposed between the first dielectric layer and the second dielectric layer.
    • 彩色等离子体激元器件具有部分调制的折射率。 第一电介质层覆盖在底部电极上,并且具有对电场无响应的折射率。 第二电介质层覆盖第一电介质层,具有响应于电场的折射率。 导电顶电极覆盖在第二电介质层上。 包括多个离散等离子体激元的等离子体激元层插入在顶部和底部电极之间。 在一个方面,等离子体激元层介于第一和第二电介质层之间。 在第二方面,等离子体激元层介于第一介电层和底电极之间。 在第三方面中,在第一介电层和底电极之间插入第一等离子体激元层,并且在第一介电层和第二电介质层之间插入离散等离子体激元的第二等离子体层。