Invention Grant
US07146085B2 Method and system for measuring the wavelength dispersion and nonlinear coefficient of an optical fiber, method of manufacturing optical fibers, method of measuring wavelength-dispersion distribution, method of compensating for measurement errors, and method of specifying conditions of measurement
有权
用于测量光纤的波长色散和非线性系数的方法和系统,光纤的制造方法,测量波长色散分布的方法,补偿测量误差的方法以及指定测量条件的方法
- Patent Title: Method and system for measuring the wavelength dispersion and nonlinear coefficient of an optical fiber, method of manufacturing optical fibers, method of measuring wavelength-dispersion distribution, method of compensating for measurement errors, and method of specifying conditions of measurement
- Patent Title (中): 用于测量光纤的波长色散和非线性系数的方法和系统,光纤的制造方法,测量波长色散分布的方法,补偿测量误差的方法以及指定测量条件的方法
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Application No.: US11249808Application Date: 2005-10-13
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Publication No.: US07146085B2Publication Date: 2006-12-05
- Inventor: Masateru Tadakuma , Yu Mimura , Misao Sakano , Osamu Aso , Takeshi Nakajima , Katsutoshi Takahashi
- Applicant: Masateru Tadakuma , Yu Mimura , Misao Sakano , Osamu Aso , Takeshi Nakajima , Katsutoshi Takahashi
- Applicant Address: JP
- Assignee: The Furukawa Electric Co., Ltd.
- Current Assignee: The Furukawa Electric Co., Ltd.
- Current Assignee Address: JP
- Agency: Cantor Colburn LLP
- Main IPC: G02B6/00
- IPC: G02B6/00 ; G01N21/00

Abstract:
A method of simultaneously specifying the wavelength dispersion and nonlinear coefficient of an optical fiber. Pulsed probe light and pulsed pump light are first caused to enter an optical fiber to be measured. Then, the power oscillation of the back-scattered light of the probe light or idler light generated within the optical fiber is measured. Next, the instantaneous frequency of the measured power oscillation is obtained, and the dependency of the instantaneous frequency relative to the power oscillation of the pump light in a longitudinal direction of the optical fiber is obtained. Thereafter, a rate of change in the longitudinal direction between phase-mismatching conditions and nonlinear coefficient of the optical fiber is obtained from the dependency of the instantaneous frequency. And based on the rate of change, the longitudinal wavelength-dispersion distribution and longitudinal nonlinear-coefficient distribution of the optical fiber are simultaneously specified.
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