Wykaz publikacji wybranego autora

Krzysztof Kolasiński, dr inż.

doktorant

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


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0001-6046-1923 połącz konto z ORCID

ResearcherID: brak

Scopus: 55024910000

OPI Nauka Polska



Statystyka obejmuje publikacje afiliowane AGH od 2008 roku włącznie

typ publikacji
rocznikl. publ.książkifragm.referatyartykułypatentymapyred. czas.inne
ogółem301119
202211
2020211
201811
201722
2016835
2015523
20141055
201311
język publikacji
rocznikrazempolskojęzyczneanglojęzycznepozostałe języki
ogółem3030
202211
202022
201811
201722
201688
201555
20141010
201311
kraj wydania
rocznikrazempubl. krajowepubl. zagraniczne
ogółem301020
202211
2020211
201811
201722
2016835
2015514
20141046
201311
Lista Filadelfijska
rocznikrazempubl. z LFpubl. pozostałe
ogółem301911
202211
2020211
201811
201722
2016853
2015532
20141055
201311
punktacja MNiSW
rocznikrazempubl. z pkt. MNiSWpubl. pozostałe
ogółem301812
202211
2020211
201811
201722
2016853
2015532
20141055
201311
publikacje recenzowane
rocznikrazempubl. recenzowanepubl. nierecenzowane
ogółem302010
202211
202022
201811
201722
2016853
2015532
20141055
201311



1
  • Approximating two-electron integrals with pyramidal convolutions
2
  • Charged probe conductance mapping for quantum Hall interferometers
3
  • Conductance measurement of spin-orbit coupling in two-dimensional electron systems with an in-plane magnetic field
4
  • Conductance microscopy of quantum dots weakly or strongly coupled to the conducting channel
5
  • Conductance response of graphene nanoribbons and quantum point contacts in scanning gate measurements
6
  • Corrigendum: Conductance response of graphene nanoribbons and quantum point contacts in scanning gate measurements (2015 \emph{Semicond. Sci. Technol.} 30 085003)
7
  • Electron paths and double-slit interference in the scanning gate microscopy
8
  • Extraction of the Rashba spin-orbit coupling constant from scanning gate microscopy conductance maps for quantum point contacts
9
  • Fast evaluation of interaction integrals for confined systems with machine learning
10
  • Fractional quantization of quantum Hall longitudinal resistance in n-p-n graphene junctions with split gates
11
  • Imaging localization of quasibound states in graphene antidots
12
  • Imaging localization of resonant states in antidots defined within a finite graphene flake
13
  • Imaging of double slit interference by scanning gate microscopy
14
  • Imaging of quasi-bond states in graphene antidots by scanning gate microscopy
15
  • Imaging snake orbits at graphene \emph{n-p} junctions
16
  • Imaging spin-resolved cyclotron trajectories in the InSb two-dimensional electron gas
17
  • Interedge backscattering in buried split-gate-defined graphene quantum point contacts
18
  • Interference features in scanning gate conductance maps of quantum point contacts with disorder
19
  • Multitip scanning gate microscopy for ballistic transport studies in systems with a two-dimensional electron gas
20
  • Quantum transport theory for systems with disorder
21
  • Scanning gate microscopy of electron flow from a spin-orbit-coupled quantum point contact
22
  • Scanning gate microscopy simulations of the double slit electron interferometer
23
  • Scanning gate microscopy simulations of the quantum Hall electron interferometer
24
  • Signatures of spin-orbit coupling in scanning gate conductance images of electron flow from quantum point contacts
25
  • Simulations of imaging of the local density of states by a charged probe technique for resonant cavities