Optical Fiber Communication Conference/National Fiber Optic Engineers Conference 2013 2013
DOI: 10.1364/ofc.2013.ow1k.2
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Characterization of Space-Division Multiplexing Systems using a Swept-Wavelength Interferometer

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Cited by 71 publications
(36 citation statements)
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“…Fewmode fibers (FMFs) supporting multiple spatial modes allow transmission of a number of channels on an orthogonal combination of modes of the FMF, at the cost of requiring multiple-input multiple-output (MIMO) equalization to remove the mode mixing and scrambling occurring in the fiber and during mode (de-)multiplexing [2][3][4]. Multi-core fibers (MCFs) reduce the footprint and increase capacity at the cost of introducing inter-core crosstalk [1].…”
Section: Introductionmentioning
confidence: 99%
“…Fewmode fibers (FMFs) supporting multiple spatial modes allow transmission of a number of channels on an orthogonal combination of modes of the FMF, at the cost of requiring multiple-input multiple-output (MIMO) equalization to remove the mode mixing and scrambling occurring in the fiber and during mode (de-)multiplexing [2][3][4]. Multi-core fibers (MCFs) reduce the footprint and increase capacity at the cost of introducing inter-core crosstalk [1].…”
Section: Introductionmentioning
confidence: 99%
“…To measure the full transfer function matrix of a multiport, space division multiplexing (sdm) system or component, the scheme may be extended to form a spatially diverse optical vector network analyzer (sdm-ovna) [22,25,27]. This section presents the setup and principle of operation of an sdm-ovna for the analysis of an sdm system or component with N × N ports in section 2.1 and discusses the digital signal processing (dsp) for measurement of the impulse response, complex transfer function and linear parameters (such as insertion loss (il), modedependent loss (mdl), differential modal group delay (dmd) and mode coupling) of the system or component in section 2.2.…”
Section: Spatially-diverse Optical Vector Network Analysis -Principlementioning
confidence: 99%
“…dmd may be derived fromH(ω) by means of principle state of polarization analysis [11,21,29] where the principle delays are approximated by the eigenvalues ofH(ω + ∆ω)H −1 (ω) or by directly analyzing the impulse responsesh k ,l (t) [22,25,30]. In the latter case, distinct peaks for different mode groups h k ,l (t) will be observed and dmd may be derived from the ratio of their respective spacing and the fiber length.…”
Section: Calculation Of the Linear Device Parametersmentioning
confidence: 99%
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