Juris Prikulis
University of Latvia
41 Papers
156 Citations
Juris Prikulis is an academic researcher from University of Latvia. The author has contributed to research in topics: Nanoparticle & Nanowire. The author has an hindex of 13, co-authored 37 publications. Previous affiliations of Juris Prikulis include Chalmers University of Technology.
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Papers
Nanoparticle Optics: The Importance of Radiative Dipole Coupling in Two-Dimensional Nanoparticle Arrays †
Christy L. Haynes,Adam D. McFarland,Lin Lin Zhao,Richard P. Van Duyne,George C. Schatz,Linda Gunnarsson,Juris Prikulis,Bengt Herbert Kasemo,Mikael Käll +8 more
TL;DR: In this paper, the extinction spectra of two-dimensional arrays of Au and Ag cylinders and trigonal prisms that have been fabricated with electron beam lithography were studied by using coupled dipole calculations, and the observed spectral variations were in good qualitative agreement with experimental data.
717
Optical Spectroscopy of Single Trapped Metal Nanoparticles in Solution
Juris Prikulis,Fredrik Svedberg,Mikael Käll,Jonas Enger,Kerstin Ramser,Mattias Goksör,Dag Hanstorp +6 more
TL;DR: In this paper, a simple method for the optical manipulation and spectroscopy of colloidal silver nanoparticles in aqueous solution using optical tweezers combined with dark-field microscopy is presented.
190
Longitudinal spin-relaxation in nitrogen-vacancy centers in electron irradiated diamond
Andrey Jarmola,Andris Berzins,Janis Smits,Krisjanis Smits,Juris Prikulis,Florian Gahbauer,Ruvin Ferber,Donats Erts,Marcis Auzinsh,Dmitry Budker,Dmitry Budker +10 more
TL;DR: In this paper, the ground state spin polarization of the nitrogen-vacancy (NV$^-$) color center in synthetic diamond was measured as a function of the concentration and magnetic field.
32
Two-terminal nanoelectromechanical bistable switches based on molybdenum-sulfur-iodine molecular wire bundles.
TL;DR: Although qualitatively, the properties of Mo(6)S(3)I( 6) nanowires in nanoelectromechanical (NEM) switches are similar to those of carbon nanotubes, their lower friction coefficient, higher mechanical stability and higher operation voltages give specific advantages in terms of smaller differences in on-off operating potentials, higher switching speeds and lower energy consumption than CNTs.
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Studies of the initial oxidation of cobalt in alkaline solutions using scanning electrochemical microscope
TL;DR: In this paper, the initial oxidation of cobalt in alkaline solutions using scanning electrochemical microscope was studied using a scanning electron microscopy (SEM) and a laser scanner.
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