Wykaz publikacji wybranego autora

Bartłomiej Szafran, prof. dr hab. inż.

profesor zwyczajny

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


  • 2018

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


[poprzednia klasyfikacja] obszar nauk ścisłych / dziedzina nauk fizycznych / fizyka


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0001-6938-3247 orcid iD

ResearcherID: A-1936-2017

Scopus: 700401625

PBN: 5e709208878c28a04738eeae

OPI Nauka Polska

System Informacyjny AGH (SkOs)





Liczba pozycji spełniających powyższe kryteria selekcji: 227, z ogólnej liczby 227 publikacji Autora


1
  • (1e, 1h) states of carbon nanotube quantum dots
2
  • A classical model for the magnetic field-induced Wigner crystallization in quantum dots
3
  • Accuracy of the Hartree-Fock method for Wigner molecules at high magnetic fields
4
  • Aharonov-Bohm conductance oscillations and current equilibration in local $n − p$ junctions in graphene
5
  • Aharonov-Bohm effect along a circular n-p junction in graphene nanoribbon
6
  • Aharonov-Bohm interferometer based on \emph{n-p} junctions in graphene nanoribbons
7
  • Aharonov-Bohm oscillations in phosphorene quantum rings: mass anisotropy compensation by confinement potential
8
  • Aharonov-Bohm oscillations of four-probe resistance in topological quantum rings in silicene and bilayer graphene
9
  • Anisotropic quantum dots: correspondence between quantum and classical Wigner molecules, parity symmetry, and broken-symmetry states
10
  • Annular confinement for electrons on liquid helium
11
  • Approximating two-electron integrals with pyramidal convolutions
12
  • Artificial molecules in coupled and single quantum dots
13
  • Broken one-particle symmetry in few-electron coupled quantum dots
14
  • Carbon nanotube \emph {n-p} quantum dots
15
  • Carrier-carrier inelastic scattering events for spatially separated electrons: magnetic asymmetry and turnstile electron transfer
16
  • Characterization of two-terminal quantum ring conductance sensitivity to potential perturbation in the scanning gate microscopy
17
  • Charge density mapping of strongly-correlated few-electron two-dimensional quantum dots by the scanning probe technique
18
  • Charged coplanar semiconductor quantum rings: Magnetization and inter-ring electron-electron correlation
19
  • Charged probe conductance mapping for quantum Hall interferometers
20
  • Charging graphene nanoribbon quantum dots
21
  • Circular n-p junctions in graphene nanoribbons
22
  • Conductance measurement of spin-orbit coupling in two-dimensional electron systems with an in-plane magnetic field
23
  • Conductance microscopy of quantum dots weakly or strongly coupled to the conducting channel
24
  • Conductance response of graphene nanoribbons and quantum point contacts in scanning gate measurements
25
  • Configuration interaction study of the single-electron transport in the vertical gated quantum dot