Wykaz publikacji wybranego autora

Dariusz Paweł Żebrowski, dr inż.

asystent

Wydział Fizyki i Informatyki Stosowanej
WFiIS-kis, Katedra Informatyki Stosowanej i Fizyki Komputerowej


  • 2018

    [dyscyplina 1] dziedzina nauk ścisłych i przyrodniczych / nauki fizyczne


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0001-8728-8032 połącz konto z ORCID

ResearcherID: brak

Scopus: 55813620300

PBN: 5e709298878c28a047398b0b

OPI Nauka Polska





Liczba pozycji spełniających powyższe kryteria selekcji: 23, z ogólnej liczby 23 publikacji Autora


1
  • Aharonov-Bohm conductance oscillations and current equilibration in local $n − p$ junctions in graphene
2
  • Charge density mapping of strongly-correlated few-electron two-dimensional quantum dots by the scanning probe technique
3
  • Charging graphene nanoribbon quantum dots
4
  • Confined states in quantum dots defined within finite flakes of bilayer graphene: coupling to the edge, ionization threshold, and valley degeneracy
5
  • Density functional theory simulation of an electrostatic
6
  • DFT study of the graphene nanoribbon quantum dots
7
  • Double quantum dots defined in bilayer graphene
8
  • Driven spin transitions in fluorinated single- and bilayer-graphene quantum dots
9
  • Electrical control of a confined electron spin in a silicene quantum dot
10
  • Electrostatic quantum dots in silicene
11
  • Finite-difference method for Dirac electrons in circular quantum dots
12
  • Formation of localized states in quantum dots formed within bilayer graphene flakes: tight binding analysis
13
  • Imaging quantum-dot-confined electron density in transition to fractional quantum Hall regime
14
15
  • Schrödinger-Poisson scheme for description of a quantum dot gate defined within bilayer graphene
16
  • Searching for ultimate cardiac data display - mixed reality interactive visualization of three-dimensional echocardiographic datasets
17
  • Simulation of charging a graphene nanoribbon quantum dot
18
  • Simulation of the charging of an electrostatic quantum dot defined in bilayer graphene
19
  • Spin and valley control in single and double electrostatic silicene quantum dots
20
  • The finite-flake graphene quantum dots in the presence of spin-orbit coupling
21
  • The spin-valley transitions in the graphene quantum dots
22
  • Two-electron bilayer graphene quantum dot: tight-binding analysis
23
  • Valley qubit in a gated $MoS_{2}$ monolayer quantum dot