Publications with the keyword "semiconductor quantum dots"


Hola !!

I. Hamad, F. Lisandrini, C. Gazza, and A. Lobos
Influence of Rashba spin-orbit coupling on the 0-π transition and Kondo temperature in one-dimensional superconductors
Physical Review B (cited By 0), 100(23), 2019
semiconductor quantum dots statistical mechanics critical value density matrix renormalization group kondo temperatures numerical renormalization groups rashba coupling rashba spin-orbit coupling superconducting gaps superconducting nanowire superconducting materials
URL, DOI, RIS, BibTex

Hola !!

J. Fernández, F. Lisandrini, P. Roura-Bas, C. Gazza, and A. Aligia
Width of the charge-transfer peak in the SU(N) impurity Anderson model and its relevance to nonequilibrium transport
Physical Review B (cited By 6), 97(4), 2018
nanocrystals semiconductor quantum dots spectral density statistical mechanics yarn anderson models density matrix renormalization group density of state nonequilibrium transport noninteracting on-site energy resonant levels variational approximation charge transfer
URL, DOI, RIS, BibTex

Hola !!

M. Roldán, N. Pellegri, and O. Sanctis
SiO2-K2O-MgO vitreous films doped with erbium and silver nanoparticles for optical applications
Optical Materials (cited By 2), 33(12), 1921-1926, 2011
erbium erbium compounds film preparation glass infrared devices magnesia metal nanoparticles nanoparticles optical properties semiconductor quantum dots silica silver nanoparticles sol-gel process sol-gels synthesis (chemical) chemical reduction glass compositions integrated applications near infrared region optical applications optical transparency preparation process synthesis parameters optical films
URL, DOI, RIS, BibTex

Hola !!

P. Roura-Bas, V. Vildosola, L. Manuel, and A. Llois
Anderson impurity model: Vertex corrections within the finite U non-crossing approximation
Physica B: Condensed Matter (cited By 1), 404(18), 2861-2864, 2009
anderson impurity model anderson model anderson models double energy electronic model energy arguments non-crossing approximation vertex correction vertex corrections crossings (pipe cable) semiconductor quantum dots
URL, DOI, RIS, BibTex

Hola !!

M. Torio, K. Hallberg, S. Flach, A. Miroshnichenko, and M. Titov
Spin filters with Fano dots
European Physical Journal B (cited By 62), 37(3), 399-403, 2004
ballistics coulomb blockade electric conductance low temperature effects magnetic field measurement magnetic filters nanostructured materials polarization resonance scattering spectrum analysis transport properties ballistic transport coulomb interaction qm scattering mechanism kondo effect spin polarized transport semiconductor quantum dots
URL, DOI, RIS, BibTex