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    • 5. 发明申请
    • Method and apparatus for the evaluation of polarization mode dispersion in optical fibers
    • 用于评估光纤中偏振模色散的方法和装置
    • US20070189656A1
    • 2007-08-16
    • US10572203
    • 2004-09-14
    • Davide SarchiMartino TravagninAlexis Debut
    • Davide SarchiMartino TravagninAlexis Debut
    • G02B6/00
    • G01M11/336G01M11/088G01M11/331G01M11/335H04B10/2569
    • A method of evaluating the Polarization Mode Dispersion (PMD) of an optical fiber by arranging the optical fiber at substantially zero tension on a surface, propagating prescribed evaluation optical signals along the optical fiber, measuring fiber Differential Group Delay (DGD) values in response to the evaluation optical signals, repeating at least once the acts of propagating and measuring, each time preliminarily inducing a change in a mode coupling of the fiber, and determining the fiber PMD on the basis of a calculated DGD average value. Changes in the polarization mode coupling of the fiber are induced by, moving at least a section of the fiber substantially orthogonally to the surface. An improved PMD evaluation apparatus includes a fiber arrangement surface adapted to have a fiber under test arranged thereon at substantially zero tension, and, operatively associated with the fiber arrangement surface, a fiber moving device activatable for moving the at least a section of the fiber substantially orthogonally to the fiber arrangement surface.
    • 一种通过将光纤布置在表面上基本为零张力的光纤来评估光纤的偏振模色散(PMD)的方法,沿着光纤传播规定的评估光信号,响应于光纤的差分组延迟(DGD)值 评估光信号,每次重复至少一次传播和测量的动作,每次预先引起光纤的模式耦合的改变,并且基于所计算的DGD平均值来确定光纤PMD。 纤维的偏振模式耦合的变化是通过将纤维的至少一部分基本上垂直于表面移动而引起的。 一种改进的PMD评估装置包括纤维布置表面,该纤维布置表面适于具有基本上零张力的被测试纤维,并且与纤维布置表面可操作地相关联;纤维移动装置,其可激活以基本上移动纤维的至少一部分 与纤维布置表面正交。
    • 6. 发明申请
    • Apparatus and method for measuring the weight of an optical fiber preform during a chemical deposition process for forming the preform
    • 在用于形成预成型件的化学沉积工艺期间测量光纤预制件的重量的装置和方法
    • US20060288738A1
    • 2006-12-28
    • US10522557
    • 2002-07-31
    • Marco RuzzierAndrea DemergazziDavide Sarchi
    • Marco RuzzierAndrea DemergazziDavide Sarchi
    • C03B37/07C03B37/018G01N21/00C03B5/24
    • G01G3/16C03B37/01486
    • An apparatus for measuring the weight of a preform for optical fibres during a chemical deposition process for the formation of a preform is disclosed. The apparatus has at least one elastic constraint associated with at least one end portion of an elongated element made of a chemical deposition substrate for the formation of the preform, a device for inducing an oscillation, for example axial, on said elongated element, a device for detecting the frequency of oscillation of said elongated element, and a device for calculating the weight of the preform according to the detected frequency of oscillation. Advantageously, the device allows the realisation of a method for measuring the weight of the preform wherein the errors in measurement caused by thermal drift effects, by the axial distribution of the masses on the preform and by loads which are different from the mass of the preform in formation are reduced to below the required precision in measurement.
    • 公开了一种用于在用于形成预制件的化学沉积过程中测量光纤预制棒的重量的装置。 该装置具有与用于形成预成型件的化学沉积基板制成的细长元件的至少一个端部相关联的至少一个弹性约束件,用于在所述细长元件上引起例如轴向振动的装置, 用于检测所述细长元件的振荡频率,以及用于根据检测到的振荡频率计算预成型件的重量的装置。 有利地,该装置允许实现一种用于测量预成型件的重量的方法,其中由热漂移效应引起的测量误差,通过预成型件上的质量的轴向分布以及不同于预成型件的质量的负载 在测量中减少到低于要求的精度。
    • 9. 发明授权
    • Method of making a low PMD optical fiber
    • 制造低PMD光纤的方法
    • US08443631B2
    • 2013-05-21
    • US12308269
    • 2006-06-22
    • Davide SarchiMaddalena Ferrario
    • Davide SarchiMaddalena Ferrario
    • C03B37/025
    • C03B37/02745C03B2203/06C03B2203/19C03B2203/36C03B2205/06G02B6/02285
    • A method of making an optical fiber includes the steps of: providing an optical fiber preform; heating an end portion of the optical fiber preform so as to obtain a softened preform end portion; drawing the softened preform end portion to form the optical fiber; applying to the optical fiber a substantially sinusoidal spin having a spin amplitude and a spin period, the substantially sinusoidal spin being transmitted to the softened preform end portion, and determining an actual spin amplitude applied to the fiber, wherein the actual spin amplitude is the spin amplitude applied in correspondence to the softened preform end portion. The spin amplitude and spin period of the substantially sinusoidal spin are selected in such a way that a ratio of the actual spin amplitude to the spin period is in the range of approximately 0.8 to approximately 1.4 turns/m2.
    • 制造光纤的方法包括以下步骤:提供光纤预制棒; 加热光纤预制棒的端部以获得软化的预成型件端部; 绘制软化的预成型件端部以形成光纤; 向光纤施加具有自旋振幅和自旋周期的基本上正弦的自旋,基本上正弦的旋转被传递到软化的预制件端部,并且确定施加到光纤的实际自旋振幅,其中实际的自旋振幅是旋转 对应于软化的预制件端部施加的振幅。 选择基本正弦自旋的自旋振幅和自旋周期,使得实际自旋振幅与自旋周期的比值在大约0.8至大约1.4转/平方米的范围内。