TIA TSB62-23-2001 ITM-23 Measurement of the Nonlinear Coefficient of Single-Mode Fibers《ITM-23 单模光纤非线性系数的测量》.pdf
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1、TIA/EIA TELECOMMUNICATIO SYSTEMS BULLETIN VS ITM-23 Measurement of the Nonlinear Coefficient of Single-Mode Fibers TSB62-23 SEPTEMBER 2001 TELECOMMUNICATIONS INDUSTRY ASSOCIATION The Tekrnrnmicatiom Indiwtry Auwdation represents the mmunicationy secior of Elsctronic Industries Alliance NOTICE TIA/EI
2、A Engineering Standards and Publications are designed to serve the public interest through eliminating misunderstandings between manufacturers and purchasers, facilitating interchangeability and improvement of products, and assisting the purchaser in selecting and obtaining with minimum delay the pr
3、oper product for his particular need. Existence of such Standards and Publications shall not in any respect preclude any member or nonmember of TIA/EIA from manufacturing or selling products not conforming to such Standards and Publications, nor shall the existence of such Standards and Publications
4、 preclude their voluntary use by those other than TIA/EIA members, whether the standard is to be used either domestically or internationally. Standards, Publications and Bulletins are adopted by EIA in accordance with the American National Standards Institute (ANSI) patent policy. By such action, TI
5、A/EIA does not assume any liability to any patent owner, nor does it assume any obligation whatever to parties adopting the Standard, Publication, or Bulletin. Technical Bulletins are distinguished from TIA/EIA Standards or Interim Standards, in that they contain a compilation of engineering data or
6、 information useful to the technical community, and represent approaches to good engineering practices that are suggested by the formulating committee. This Bulletin is not intended to preclude or discourage other approaches that similarly represent good engineering practice, or that may be acceptab
7、le to, or have been accepted by, appropriate bodies. Parties who wish to bring other approaches to the attention of the formulating committee to be considered for inclusion in future revisions of this Bulletin are encouraged to do so. It is the intention of the formulating committee to revise and up
8、date this Bulletin from time to time as may be occasioned by changes in technology, industry practice, or government regulations, or for other appropriate reasons. (From Project No. 3-4654, formulated under the cognizance of the TIA FO-6.6 Subcommittee on Optical Fibers .) Published by TELECOMMUNICA
9、TIONS INDUSTRY ASSOCIATION 2001 Standards and Technology Department 2500 Wilson Boulevard Arlington, VA 22201 PRICE: Please refer to the current Catalog of ELECTRONIC INDUSTRIES ALLIANCE STANDARDS and ENGINEERING PUBLICATIONS or call Global Engineering Documents, USA and Canada (1-800-854-7179) Inte
10、rnational (303-397-7956) All rights reserved Printed in U.S.A. TSB-62-23 ITM - 23 Measurement of the nonlinear coefficient of single-mode fibers Con tents 1 I n trod uction 2 Normative references 3 Apparatus 4 Sampling and specimens 5 Procedure 6 7 Documentation Calculations and interpretation of re
11、sults Annex A Continuous wave dual-frequency method (CW) 10 Annex C Table of acronyms 21 Annex D Bibliography 22 Comparison between this ITM and IEC or ITU Standards 22 Annex B Pulsed single-frequency method (PM) 16 Annex E Foreword . ii Measurement of the nonlinear coefficient of single-mode fibers
12、 . 1 ITM - 23 1 i TSB-62-23 ITM - 23 Measurement of the nonlinear coefficient of single-mode fibers Foreword This Telecommunications Standards Manual comes from TIA (Telecommunications Industry Association) Project No. 4654, and was formulated under the cognizance of TIA FO-6.6 Subcommittee on Optic
13、al Fibers and Materials. This ITM is part of the series of test procedures included within Recommended Standard TIAEIA-TSB-62. There are five annexes, all of them informative. Key words: nonlinear coefficient, single-mode optical fiber. ii TSB-62-23 ITM - 23 Measurement of the nonlinear coefficient
14、of single-mode fibers 1 Introduction 1.1 Intent This informative test method describes two methods for uniform measurement of the nonlinear coefficient of single-mode fibers in the 1550 nm region. 1.2 Scope The nonlinear coefficient (nLc) is the ratio of the Kerr nonlinear refractive index, n2, and
15、the effective area, A,fi (see FOTP-132), as: n2 nLc = - The nonlinear coefficient is related to the following nonlinear optical distortion effects as a combined parameter: Self-phase modulation (SPM) Cross-phase modulation (XPM) Four-wave mixing (FWM) Other fiber attributes, such as chromatic disper
16、sion, also influence the transmission. Two methods are given, with details specific to each in normative annexes. They are: Method A Continuous-wave dual-frequency Method B Pulsed single-frequency Both methods require injecting very high powers (5 dBm or more) into the fiber, measurement of this pow
17、er (absolute), and measurement of the output spectrum - which is modified by nonlinear effects. Both methods use calculations that combine these measured results with those derived from other measurements such as attenuation (FOTP-61 or FOTP-78) and chromatic dispersion (FOTP- 168, FOTP-169, or FOTP
18、-175). Both methods have limitations on the length of fiber that can be measured - in a relationship with the chromatic dispersion at the wavelength being measured. 1 TSB-62-23 Method A I requires injecting the light of two wavelengths into the fiber. The light of both wavelengths is constant at var
19、ious power levels. At higher power, the lights beat due to the nonlinear effect and produce an output spectrum that is spread. The relationship of the power level to a particular metric of spectrum spreading is used to calculate the nonlinear coefficient. Method B 2, 31 requires injecting pulsed lig
20、ht at a single wavelength. The pulses must be of a duration substantially less than 1 ns and the input peak power of these pulses must be measured and related to the nonlinear spreading of the output spectrum. 1.3 Applicability Measurements of the nonlinear coefficient are used to characterize speci
21、fic single-mode fiber designs for the purpose of system design relative to power levels and distortion or noise effects derived from the nonlinear optical behavior. This test method applies to a parameter that is not specifiable, at least at the present time. Therefore, this test method shall not be
22、 called out in any TIA specification document. 2 Normative references The following standards contain provisions which, through reference in this text, constitute provisions of this test method. At the time of publication, the editions indicated were valid. All standards are subject to revision, and
23、 parties to agreements based on this ITM are encouraged to investigate the possibility of applying the most recent editions of the standards indicated below. ANSI and TIA maintain registers of currently valid national standards published by them. ANSI/TIA/EIA 440-B Fiber Optic Terminology ANSI/TIA/E
24、IA 455-B Standard Test Procedure for Fiber Optic Fibers, Cables, Transducers, Sensors, Connecting and Terminating Devices, and Other Fiber Optic Components ANSI/TIA/EIA 4920000-B Generic Specijkation for Optical Fibers FOTP-57 (TMIA-455-57B) Preparation and examination of optical Jber endface for te
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