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    • 2. 发明授权
    • Non-destructive testing of an integrated optical coupler in an integrated optical circuit
    • 集成光耦合器在集成光电路中的非破坏性测试
    • US07948615B2
    • 2011-05-24
    • US12423175
    • 2009-04-14
    • Christophe KoppPhilippe GrosseRegis Orobtchouk
    • Christophe KoppPhilippe GrosseRegis Orobtchouk
    • G01N21/00
    • G01M11/02G01M11/35
    • A non-destructive method for characterizing a surface-illuminated integrated optical coupler associated with an optical waveguide, comprising the steps of measuring the reflection coefficient on a first region of the coupler at a distance from the optical waveguide and constructing a first curve, determining a first model of the reflection coefficient on the first region, performing a first parameter fitting between the first curve and the first model to determine first parameters, measuring the reflection coefficient on a second region of the coupler close to the guide, and constructing a second curve, determining a second model of the reflection coefficient on the second region, performing a second parameter fitting between the second curve and the second model to determine second parameters, and constructing the characteristic of the coupling efficiency of the coupler using the first and second parameters.
    • 一种用于表征与光波导相关联的表面照明集成光耦合器的非破坏性方法,包括以下步骤:在与光波导一定距离处测量耦合器的第一区域上的反射系数并构建第一曲线,确定 在第一区域上反射系数的第一模型,执行第一曲线与第一模型之间的第一参数拟合以确定第一参数,测量接近导向器的耦合器的第二区域上的反射系数,以及构造第二曲线 确定所述第二区域上的所述反射系数的第二模型,执行所述第二曲线与所述第二模型之间的第二参数拟合以确定第二参数,以及使用所述第一和第二参数构建所述耦合器的耦合效率的特性。
    • 3. 发明申请
    • NON-DESTRUCTIVE TESTING OF AN INTEGRATED OPTICAL COUPLER IN AN INTEGRATED OPTICAL CIRCUIT
    • 一体化光电耦合器的非破坏性测试
    • US20090262336A1
    • 2009-10-22
    • US12423175
    • 2009-04-14
    • Christophe KoppPhilippe GrosseRegis Orobtchouk
    • Christophe KoppPhilippe GrosseRegis Orobtchouk
    • G01N21/00
    • G01M11/02G01M11/35
    • A non-destructive method for characterizing a surface-illuminated integrated optical coupler associated with an optical waveguide, comprising the steps of measuring the reflection coefficient on a first region of the coupler at a distance from the optical waveguide and constructing a first curve, determining a first model of the reflection coefficient on the first region, performing a first parameter fitting between the first curve and the first model to determine first parameters, measuring the reflection coefficient on a second region of the coupler close to the guide, and constructing a second curve, determining a second model of the reflection coefficient on the second region, performing a second parameter fitting between the second curve and the second model to determine second parameters, and constructing the characteristic of the coupling efficiency of the coupler using the first and second parameters.
    • 一种用于表征与光波导相关联的表面照明集成光耦合器的非破坏性方法,包括以下步骤:在与光波导一定距离处测量耦合器的第一区域上的反射系数并构建第一曲线,确定 在第一区域上反射系数的第一模型,执行第一曲线与第一模型之间的第一参数拟合以确定第一参数,测量接近导向器的耦合器的第二区域上的反射系数,以及构造第二曲线 确定所述第二区域上的所述反射系数的第二模型,执行所述第二曲线与所述第二模型之间的第二参数拟合以确定第二参数,以及使用所述第一和第二参数构建所述耦合器的耦合效率的特性。