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    • 5. 发明授权
    • Fast, environmentally-stable fiber switches using a Sagnac interferometer
    • US06584241B2
    • 2003-06-24
    • US10072559
    • 2002-02-08
    • Monica K. DavisMichel J. F. Digonnet
    • Monica K. DavisMichel J. F. Digonnet
    • G02F1295
    • G02F1/3519
    • A fast, environmentally-stable fiber switch uses a Sagnac interferometer having an active fiber portion located asymmetrically in the loop of the interferometer. A pump pulse is applied to the interferometric loop and acts upon the active fiber portion to cause a change in its refractive index either by a thermal effect or by a non-thermal nonlinear effect. Because the active fiber portion is located asymmetrically in the loop, the change in refractive index of the active fiber portion is seen by the clockwise propagating light signal and the counterclockwise propagating light signal at different times, thus causing a temporary difference in the phase changes experienced by the two counterpropagating light signals. The temporary difference in the phase changes causes the two light signals to combine constructively at a switched output port of the input/output coupler of the interferometric loop until the phase changes of the two signals are again the same, at which time the signals combine at an unswitched output port of the coupler. The on-time of the switch is set primarily by the length of the Sagnac loop, and the fall time, which is caused by the Sagnac architecture, can be fast, even with a relatively slow active fiber.
    • 8. 发明授权
    • Method for manufacturing optical gratings
    • 光栅制造方法
    • US06739154B2
    • 2004-05-25
    • US09840856
    • 2001-04-24
    • Monica K. Davis
    • Monica K. Davis
    • C37B3707
    • G02B6/02123
    • A method for manufacturing an optical grating on a length of optical fiber having input and output ends. Guided light is conducted into the input end of the fiber and light reflected back from the output end is measured with an optical sensor. An optical grating is formed in the fiber between the input and output ends and guided light is conducted into the input end of the fiber and light reflected back from the grating is measured with an optical sensor. Measured light is compared to determine a percentage of guided light reflected back from the grating.
    • 一种用于在具有输入和输出端的光纤长度上制造光栅的方法。 引导光被传导到光纤的输入端,用光学传感器测量从输出端反射的光。 光纤在输入端和输出端之间的光纤中形成,导光被传导到光纤的输入端,用光学传感器测量从光栅反射的光。 比较测量光以确定从光栅反射回来的引导光的百分比。
    • 10. 发明授权
    • Fast, environmentally-stable fiber switches using a Sagnac interferometer
    • 使用Sagnac干涉仪的快速,环保的光纤开关
    • US06393167B1
    • 2002-05-21
    • US09215403
    • 1998-12-18
    • Monica K. DavisMichel J. F. Digonnet
    • Monica K. DavisMichel J. F. Digonnet
    • G02B626
    • G02F1/3519
    • A fast, environmentally-stable fiber switch uses a Sagnac interferometer having an active fiber portion located asymmetrically in the loop of the interferometer. A pump pulse is applied to the interferometric loop and acts upon the active fiber portion to cause a change in its refractive index either by a thermal effect or by a non-thermal nonlinear effect. Because the active fiber portion is located asymmetrically in the loop, the change in refractive index of the active fiber portion is seen by the clockwise propagating light signal and the counterclockwise propagating light signal at different times, thus causing a temporary difference in the phase changes experienced by the two counterpropagating light signals. The temporary difference in the phase changes causes the two light signals to combine constructively at a switched output port of the input/output coupler of the interferometric loop until the phase changes of the two signals are again the same, at which time the signals combine at an unswitched output port of the coupler. The on-time of the switch is set primarily by the length of the Sagnac loop, and the fall time, which is caused by the Sagnac architecture, can be fast, even with a relatively slow active fiber.
    • 快速,环境稳定的光纤开关使用具有位于干涉仪的环路中的非对称位置的有源光纤部分的Sagnac干涉仪。 泵浦脉冲被施加到干涉测量环路上并且作用在有源光纤部分上,以通过热效应或非热非线性效应引起其折射率的变化。 由于有源光纤部分不对称地位于环路中,有源光纤部分的折射率变化可以通过顺时针传播的光信号和逆时针传播的光信号在不同时间看到,从而导致经历的相位变化的暂时的差异 由两个反向传播的光信号。 相位变化的暂时差异导致两个光信号在干涉测量环路的输入/输出耦合器的切换输出端口上建构性地组合,直到两个信号的相位变化再次相同,此时信号在 耦合器的未切换输出端口。 开关的导通时间主要由Sagnac回路的长度决定,即使使用相对较慢的有源光纤,Sagnac架构引起的下降时间也会很快。