Rupesh Verma
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Explore the profile of Rupesh Verma including associated specialties, affiliations and a list of published articles.
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Recent Articles
11.
Verma R, Audhkhasi R, Thyagarajan K, Banerjee V
J Opt Soc Am A Opt Image Sci Vis
. 2018 Mar;
35(3):370-376.
PMID: 29522055
Many of the present-day optical devices use photonic crystals. These are multilayers of dielectric media that control the reflection and transmission of light falling on them. In this paper, we...
12.
Verma R, Sharma M, Senthilkumaran P, Banerjee V
J Opt Soc Am A Opt Image Sci Vis
. 2014 Aug;
31(7):1473-80.
PMID: 25121434
Aperiodic and fractal optical elements are proving to be promising candidates in image-forming devices. In this paper, we analyze the diffraction patterns of Fibonacci gratings (FbGs), which are prototypical examples...
13.
Verma R, Banerjee V, Senthilkumaran P
Opt Lett
. 2014 May;
39(9):2557-60.
PMID: 24784044
The Fibonacci grating (FbG) is an archetypal example of aperiodicity and self-similarity. While aperiodicity distinguishes it from a fractal, self-similarity identifies it with a fractal. Our paper investigates the outcome...
14.
Verma R, Sharma M, Banerjee V, Senthilkumaran P
Opt Express
. 2013 Apr;
21(7):7951-6.
PMID: 23571887
Diffractals are electromagnetic waves diffracted by a fractal aperture. In an earlier paper, we reported an important property of Cantor diffractals, that of redundancy [R. Verma et. al., Opt. Express...
15.
Verma R, Banerjee V, Senthilkumaran P
Opt Express
. 2012 Apr;
20(8):8250-5.
PMID: 22513537
Cantor diffractals are waves that have encountered a Cantor grating. In this paper, we report an important property of Cantor diffractals, namely that of redundancy. We observe that the Fraunhofer...