» Authors » Pratibha Dev

Pratibha Dev

Explore the profile of Pratibha Dev including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 11
Citations 69
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
1.
Stephen G, Naumov I, Blumenschein N, Leo Sun Y, DeMell J, Shirodkar S, et al.
ACS Nano . 2022 Oct; 16(11):19346-19353. PMID: 36260344
While heterostructures are ubiquitous tools enabling new physics and device functionalities, the palette of available materials has never been richer. Combinations of two emerging material classes, two-dimensional materials and topological...
2.
Balasubramanian B, Manchanda P, Pahari R, Chen Z, Zhang W, Valloppilly S, et al.
Phys Rev Lett . 2020 Feb; 124(5):057201. PMID: 32083901
Magnets with chiral crystal structures and helical spin structures have recently attracted much attention as potential spin-electronics materials, but their relatively low magnetic-ordering temperatures are a disadvantage. While cobalt has...
3.
Ratchford D, Winta C, Chatzakis I, Ellis C, Passler N, Winterstein J, et al.
ACS Nano . 2019 Jun; 13(6):6730-6741. PMID: 31184132
Surface phonon polaritons (SPhPs), the surface-bound electromagnetic modes of a polar material resulting from the coupling of light with optic phonons, offer immense technological opportunities for nanophotonics in the infrared...
4.
Economou S, Dev P
Nanotechnology . 2016 Nov; 27(50):504001. PMID: 27861163
Optically active spins in solid-state systems can be engineered to emit photons that are entangled with the spin in the solid. This allows for applications such as quantum communications, quantum...
5.
Cress C, Schmucker S, Friedman A, Dev P, Culbertson J, Lyding J, et al.
ACS Nano . 2016 Feb; 10(3):3714-22. PMID: 26910346
We investigate hyperthermal ion implantation (HyTII) as a means for substitutionally doping layered materials such as graphene. In particular, this systematic study characterizes the efficacy of substitutional N-doping of graphene...
6.
Tsoi S, Dev P, Friedman A, Stine R, Robinson J, Reinecke T, et al.
ACS Nano . 2014 Nov; 8(12):12410-7. PMID: 25412420
A sharp tip of atomic force microscope is employed to probe van der Waals forces of a silicon oxide substrate with adhered graphene. Experimental results obtained in the range of...
7.
Dev P, Agrawal S, English N
J Phys Chem A . 2012 Dec; 117(10):2114-24. PMID: 23237270
Time-dependent density functional theory (TD-DFT) was employed to calculate the UV/vis spectra for three of the triphenylamine (TPA)-donor dyes, TC1, L1, and LJ1, in isolation as well as when complexed...
8.
Dev P, Agrawal S, English N
J Chem Phys . 2012 Jun; 136(22):224301. PMID: 22713041
UV-Vis spectra are calculated using time-dependent density functional theory for several organic dyes--4-(N, N-dimethylamino) benzonitrile, alizarin, squaraine, polyene-linker dyes, oligothiophene-containing coumarin dyes (NKX series) and triphenylamine-donor dyes. Most of these...
9.
Abtew T, Sun Y, Shih B, Dev P, Zhang S, Zhang P
Phys Rev Lett . 2011 Nov; 107(14):146403. PMID: 22107219
The negatively charged nitrogen-vacancy (NV(-)) center in diamond is considered to be one of the most promising solid state systems for quantum information applications. Excited states of the NV(-) center...
10.
Agarwal V, Gupta B, Dev P, Kumar Y, Ahmad N, Gupta K
Indian J Physiol Pharmacol . 2010 Feb; 53(2):189-91. PMID: 20112825
No abstract available.