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Exciton diffusion in WSe2 monolayers embedded in a van der Waals heterostructure
We have combined spatially resolved steady-state micro-photoluminescence with time-
resolved photoluminescence to investigate the exciton diffusion in a WSe 2 monolayer …
resolved photoluminescence to investigate the exciton diffusion in a WSe 2 monolayer …
Noise-induced effects in nonlinear relaxation of condensed matter systems
Noise-induced phenomena characterise the nonlinear relaxation of nonequilibrium physical
systems towards equilibrium states. Often, this relaxation process proceeds through …
systems towards equilibrium states. Often, this relaxation process proceeds through …
Interaction-driven transport of dark excitons in 2D semiconductors with phonon-mediated optical readout
The growing field of quantum information technology requires propagation of information
over long distances with efficient readout mechanisms. Excitonic quantum fluids have …
over long distances with efficient readout mechanisms. Excitonic quantum fluids have …
Nonlinear relaxation phenomena in metastable condensed matter systems
Nonlinear relaxation phenomena in three different systems of condensed matter are
investigated.(i) First, the phase dynamics in Josephson junctions is analyzed. Specifically, a …
investigated.(i) First, the phase dynamics in Josephson junctions is analyzed. Specifically, a …
Conduction mechanism effect on physical unclonable function using Al2O3/TiOX memristors
In this study, we evaluate the performance of a physical unclonable function (PUF) using Al
2 O 3/TiO x based memristors. Through a conduction mechanism analysis, it is confirmed …
2 O 3/TiO x based memristors. Through a conduction mechanism analysis, it is confirmed …
Machine learning for analysis of time-resolved luminescence data
Time-resolved photoluminescence is one of the most standard techniques to understand
and systematically optimize the performance of optical materials and optoelectronic devices …
and systematically optimize the performance of optical materials and optoelectronic devices …
Influence of oxygen ion elementary diffusion jumps on the electron current through the conductive filament in yttria stabilized zirconia nanometer-sized memristor
AV Yakimov, DO Filatov, ON Gorshkov… - Chaos, Solitons & …, 2021 - Elsevier
The structure of the electron current through an individual filament of a nanometer-sized
virtual memristor consisting of a contact of a conductive atomic force microscope probe to an …
virtual memristor consisting of a contact of a conductive atomic force microscope probe to an …
[PDF][PDF] Dynamics of Exciton Transport in Two‐Dimensional Materials
In recent years, two-dimensional (2D) materials have attracted extensive interests due to the
large exciton binding energy different from bulk materials. Many peculiar properties have …
large exciton binding energy different from bulk materials. Many peculiar properties have …
Effect of SiO2 sublayer on the retention characteristics of nanometer-sized Si3N4 memristive devices investigated by low-frequency noise spectroscopy
VS Kochergin, AV Yakimov, AV Klyuev… - Japanese Journal of …, 2022 - iopscience.iop.org
The results of the experimental investigation of the relationship between the low-frequency
noise spectrum of the electric current through conducting filaments in Si 3 N 4 films with a …
noise spectrum of the electric current through conducting filaments in Si 3 N 4 films with a …
Effect of the Pauli principle on photoelectron spin transport in GaAs
In p+ GaAs thin films, the effect of photoelectron degeneracy on spin transport is investigated
theoretically and experimentally by imaging the spin polarization profile as a function of …
theoretically and experimentally by imaging the spin polarization profile as a function of …