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Zero-Loss Broadband Dispersion Compensation Scheme for G.652 Fibers
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作者 Kamna Pande M.R. Shenoy +1 位作者 B.P. Pal K.Thyagarajan 《光学学报》 EI CAS CSCD 北大核心 2003年第S1期92-93,共2页
We have evaluated the gain characteristics of an erbium-doped broadband dual-core dispersion compensating fiber (DCF) to achieve a loss-less dispersion compensating module for long-haul G.652 fiber links.
关键词 for on be of HAVE in DCF Zero-Loss Broadband Dispersion Compensation scheme for G.652 Fibers
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On Discreteness of the Hopf Equation
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作者 Hai-liang Liu 《Acta Mathematicae Applicatae Sinica》 SCIE CSCD 2008年第3期423-440,共18页
The principle aim of this essay is to illustrate how different phenomena is captured by different discretizations of the Hopf equation and general hyperbolic conservation laws. This includes dispersive schemes, shock ... The principle aim of this essay is to illustrate how different phenomena is captured by different discretizations of the Hopf equation and general hyperbolic conservation laws. This includes dispersive schemes, shock capturing schemes as well as schemes for computing multi-valued solutions of the underlying equation. We introduce some model equations which describe the behavior of the discrete equation more accurate than the original equation. These model equations can either be conveniently discretized for producing novel numerical schemes or further analyzed to enrich the theory of nonlinear partial differential equations. 展开更多
关键词 Hopf equation dispersive scheme shock capturing schemes multi-valued solutions level set equation
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