Wykaz publikacji wybranego autora

Marcin Zając, dr

adiunkt

Wydział Fizyki i Informatyki Stosowanej
WFiIS-kfc, Katedra Fizyki Ciała Stałego


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: brak

ResearcherID: brak

Scopus: brak

OPI Nauka Polska




1
  • Conversion electron Mössbauer spectroscopy studies of ultrathin Fe films on MgO(001)
2
  • Coupling of collective motions of the protein matrix to vibrations of the non-heme iron in bacterial photosynthetic reaction centers
3
  • Depth dependence of iron diffusion in $Fe_{3}Si$ studied with nuclear resonant scattering
4
  • Depth-dependent magnetic characterization of Fe films on NiO(001)
5
  • Diffusion jumps of single atoms into vacancies in an iron monolayer studied by nuclear resonant scattering
6
  • Interface properties of single and bi-layer $Fe_{3}O_{4}$ films grown on MgO(001) studied by RBS and channeling experiments
7
  • Magnetism of ultra-thin iron films seen by the nuclear resonant scattering of synchrotron radiation
8
9
  • Milli-electronvolt monochromatization of hard X-rays with a sapphire backscattering monochromator
10
  • Noncollinear magnetization structure at the thickness-driven spin-reorientation transition in epitaxial Fe film on W(110)
11
  • Nuclear resonant scattering studies of electric field gradient in Fe monolayer on W(110)
12
  • Oxygen adsorption on the Fe(110) surface: the old system – new structures
13
  • Phonons at the $Fe(110)$ surface
14
  • Photoemission electronic states of epitaxially grown magnetite films
15
  • Structure, composition and crystallinity of epitaxial magnetite thin films
16
  • Surface structure of epitaxial magnetite ${Fe_{3}O_{4}(001)}$ films: in situ STM and CEMS studies
17
  • Tailoring of the perpendicular magnetization component in ferromagnetic films on a vicinal substrate
18
  • The influence of the interlayer exchange coupling on the magnetism of an $Fe(001)$ monolayer
19
  • Thermal and irradiation induced interdiffusion in $Fe_{3}O_{4}/MgO(001)$ thin film
20
21
  • Thickness-driven polar spin reorientation transition in ultrathin Fe/Au(001) films
22