Taylor & Francis

Waves in Random Media Template

Write in a clean editor, then format for Waves in Random Media in one click — DocuGuru applies the official Taylor & Francis template with author–year references and exports a submission-ready PDF plus the editable LaTeX source. Free to start.

About the Waves in Random Media format

Waves in Random Media is a peer-reviewed journal published by Taylor & Francis, covering Random lasers and scattering media, Electromagnetic Scattering and Analysis, Underwater Acoustics Research.

PublisherTaylor & Francis
Reference styleAuthor–year (Chicago, T&F)
Author–year — (Smith, 2023) in the text
Smith, Ada, Ben Jones, and Cara Lee. 2023. "A Representative Article Title." Waves in Random Media 12 (3): 45–58.

Formats any DOI in Waves in Random Media style. No sign-up.

Publishes research inRandom lasers and scattering media Electromagnetic Scattering and Analysis Underwater Acoustics Research Ocean Waves and Remote Sensing Surface Roughness and Optical Measurements
ISSN0959-7174
h-index49
i10-index261
Total citations12,538
Top institutions publishing hereCentre National de la Recherche Scientifique
You getA submission-ready PDF and the editable LaTeX source — ready to submit.

Papers published in Waves in Random Media per year

27
1993
37
1994
34
1995
34
1996
64
1997
44
1998
39
1999
38
2000
46
2001
36
2002
26
2003
61
2004

Citation impact of Waves in Random Media by publication year

303
1993
960
1994
357
1995
358
1996
722
1997
432
1998
850
1999
621
2000
1.5K
2001
924
2002
1.3K
2003
2.6K
2004

Citations each year’s papers have accumulated so far — the most recent years are still building up.

Most-cited papers in Waves in Random Media

Quantum graphs: I. Some basic structures

Peter Kuchment · 1 Jan 2004

A quantum graph is a graph equipped with a self-adjoint differential or pseudo-differential Hamiltonian. Such graphs have been studied recently in relation to some problems of mathematics, physics and chemistry. The paper has a survey nature and is devoted to the description of some basic notions concerning quantum graphs, including the boundary conditions, self-adjointness, quadratic…

Lasing in random media

Hui Cao · 1 Jul 2003

Abstract A random laser is a non-conventional laser whose feedback mechanism is based on disorder-induced light scattering. Depending on whether the feedback supplied by scattering is intensity feedback or amplitude feedback, random lasers are classified into two categories: random lasers with incoherent feedback and random lasers with coherent feedback. A brief survey of random lasers…

Simulation of a Kolmogorov phase screen

Richard G. Lane, Andreas Glindemann, J. C. Dainty · 1 Jul 1992

AbstracL WO new methods for madelling Kolmogomv phase fluctuations oyer a finite apenure are described. Ihe firs1 method relies on the incorporation of subharmonim in order to model accurately the low frequencies of the Kolmogomv SpeclNm. Ihc second method provides a less accurate, but much faster method for simulating the Kolmogorw spectrum ty using a…

A critical survey of approximate scattering wave theories from random rough surfaces

T. Elfouhaily, Charles‐Antoine Guérin · 9 Aug 2004

Abstract This review is intended to provide a critical and up-to-date survey of the analytical approximate methods that are encountered in scattering from random rough surfaces. The underlying principles of the different methods are evidenced and the functional form of the corresponding scattering amplitude or cross-section is given. The reader is referred to the original…

Small-slope approximation for electromagnetic wave scattering at a rough interface of two dielectric half-spaces

Alexander G. Voronovich · 1 Jul 1994

Abstract The small-slope approximation (SSA) for wave scattering at the rough interface of two homogeneous half-spaces is developed. This method bridges the gap between two classical approaches to the problem: the method of small perturbations and the Kirchhoff (or quasi-classical) approximation. In contrast to these theories, the SSA is applicable irrespective of the wavelength of…

Waves in Random Media template — frequently asked questions

How do I write a paper in the Waves in Random Media format?
In DocuGuru you write your manuscript in a normal editor — no LaTeX setup required — and select the Waves in Random Media template. When you export, DocuGuru compiles the paper into the official Taylor & Francis format and hands you a submission-ready PDF along with the editable LaTeX source.
What reference style does Waves in Random Media use?
Waves in Random Media uses Author–year (Chicago, T&F) references, shown as author–year markers such as (Smith, 2023) in the text. DocuGuru formats every in-text citation and the reference list in this exact style automatically. A reference appears like this: Smith, Ada, Ben Jones, and Cara Lee. 2023. "A Representative Article Title." Waves in Random Media 12 (3): 45–58.
Do I need to know LaTeX to submit to Waves in Random Media?
No. DocuGuru generates the interact LaTeX class and compiles the PDF for you in the background, so you get a Taylor & Francis-ready Waves in Random Media document without writing any LaTeX. If you do want it, the LaTeX source is included in the export.
Can I import an existing draft into the Waves in Random Media template?
Yes. Paste or upload your current manuscript — Word, LaTeX, Markdown, or plain text — and DocuGuru reflows it into the Waves in Random Media format with correct headings, figures, tables, and author–year citations.
Who publishes Waves in Random Media?
Waves in Random Media is a multidisciplinary journal published by Taylor & Francis. DocuGuru's Waves in Random Media template matches Taylor & Francis's official submission format.
Can I export a submission-ready Waves in Random Media PDF?
Yes — DocuGuru produces a PDF built with the official Waves in Random Media template (the interact class) that is ready to submit to Taylor & Francis, together with the matching LaTeX source files.
How much does the Waves in Random Media template cost?
You can start writing in the Waves in Random Media template for free. Exporting the final submission-ready Waves in Random Media PDF and LaTeX source is part of DocuGuru's paid plans — see the app for current pricing.
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