activity
20132020
most citedEdge Configurational Effect on Band Gaps in Graphene Nanoribbons

17 citations · 23 across the 6 of their papers we have counts for

collaborators

6 papers

math.DG2020★ 2 cited

Biharmonic $δ(\lowercase{r})$-ideal hypersurfaces in Euclidean spaces are minimal

Deepika, Andreas Arvanitoyeorgos

A submanifold of a Euclidean space is called biharmonic if , where is the mean curvature vector of . A well known conjecture of B.Y.…

cs.IR2016★ 2 cited

URL ordering policies for distributed crawlers: a review

Deepika, Ashutosh Dixit

With the increase in size of web, the information is also spreading at large scale. Search Engines are the medium to access this information. Crawler is the module of search engine…

math.DG2016★ 2 cited

Lorentz Hypersurfaces satisfying with non diagonal shape operator

Deepika, Andreas Arvanitoyeorgos, Ram Shankar Gupta

We study Lorentz hypersurfaces in satisfying with non diagonal shape operator, having complex eigenvalues. We prove that e…

cond-mat.mes-hall2014★ 17 cited

Edge Configurational Effect on Band Gaps in Graphene Nanoribbons

Deepika, T. J. Dhilip Kumar, Alok Shukla +1

In this Letter, we put forward a resolution to the prolonged ambiguity in energy band gaps between theory and experiments of fabricated graphene nanoribbons (GNRs). Band structure…

cond-mat.mtrl-sci2014

Controlled Smooth Edge Formation of Graphene Nanoribbons

Deepika, T. J. Dhilip Kumar, Nitin K. Goel +1

We report energy estimated to dissociate a C-C bond of a graphene sheet to form nanoribbons of armchair and zigzag configurations using first principles calculations. For the groun…

cond-mat.mes-hall2013

Energy Controlled Edge Formation for Graphene Nano Ribbons

Deepika, T. J. Dhilip Kumar, Rakesh Kumar

On the basis of first principles calculations, we report energy estimated to cut a graphene sheet into nanoribbons of armchair and zigzag configurations. Our calculations show that…