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W. Chen

5 papers hereh-index 5132 citations11 works total

Matching runs newest-first, so older work may not be attached to this profile yet.

author position
  • sole author3
  • first author2

Across the 5 of 5 papers where every author was matched, so the position is known.

fields
  • math-ph4
  • cs.CE1
same name
  • W. Chen — 6 papers, h 9
  • W. Chen — 4 papers, h 8
  • W. Chen — 3 papers, h 7
  • W. Chen — 1 paper, h 6
  • W. Chen — 1 paper, h 16

Either other researchers who publish under this name, or the same person where the external sources have not merged their records.

identity via Semantic Scholar / OpenAlex

most citedPhysical interpretation of fractional diffusion-wave equation via lossy media obeying frequency power law

21 citations · 37 across the 5 of their papers we have counts for

collaborators
Showing math-phShow all

4 papers · 1 filter

math-ph2003★ 1 cited

An explanation of infrared catastrophe of 1/f power spectra

W. Chen

Chen [1] builds the intrinsic link between the 1/f power spectra and the acoustic frequency power law dissipation and, accordingly, presents two explanations of the so-called infra…

math-ph2003★ 2 cited

1/f spectral trend and frequency power law of lossy media

W. Chen

The dissipation of acoustic wave propagation has long been found to obey an empirical power function of frequency, whose exponent parameter varies through different media. This not…

math-ph2003★ 21 cited

Physical interpretation of fractional diffusion-wave equation via lossy media obeying frequency power law

W. Chen, S. Holm

The fractional diffusion-wave equation (FDWE) is a recent generalization of diffusion and wave equations via time and space fractional derivatives. The equation underlies Levy rand…

math-ph2002★ 13 cited

Fractional Laplacian, Levy stable distribution, and time-space models for linear and nonlinear frequency-dependent lossy media

W. Chen, S. Holm

The frequency-dependent attenuation typically obeys an empirical power law with an exponent ranging from 0 to 2. The standard time-domain partial differential equation models can d…

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