7 papers
Twin Domains in 111 oriented {CdO/MgO} superlattices: homoepitaxy versus heteroepitaxy
Ewa Przeździecka, Aleksandra Wierzbicka, Abinash Adhikari +1
The structural properties of (111)-oriented {CdO/MgO} superlattice structures grown on c-sapphire and cubic MgO substrates have been studied by high resolution X-ray diffraction. T…
MBE obtained n-CdO:Eu p-Si heterojunctions -- electron beam induced profiling, electrical and structural properties
E Przezdziecka, I Perlikowski, S Chusnutdinow +7
The present investigation reports on the fabrication and characterization of heterojunctions based on in situ Eu doped CdO layers, which were deposited on p-type silicon using the…
Eu-assisted enhancement of photoresponse in MBE-grown CdO/Si photodetectors
Igor Perlikowski, Eunika Zielony, Abinash Adhikari +4
Doping cadmium oxide with rare earth (RE) elements is a way to control the band gap and enhance carrier concentration and mobility. This work presents how one of REs, europium, imp…
Inverse thermal anisotropy in CdMgO measured using photothermal infrared radiometry and thermoreflectance
Misha Khalid, Ankur Chatterjee, Ewa Przezdziecka +5
This study elucidates the intriguing phenomenon of inverse thermal anisotropy in cadmium magnesium oxide (CdMgO) thin films, characterized by cross-plane thermal conductivity being…
New insights into crystallographic relation and lattice dynamics effects in {CdO/MgO} superlattices grown by plasma-assisted molecular beam epitaxy
Aleksandra Wierzbicka, Ewa Przezdziecka, Igor Perlikowski +3
This article explores the structural properties of molecular beam epitaxy grown {CdO/MgO} superlattices on sapphire substrates of different crystallographic orientations (a-, c-, r…
Structural and optical properties of in situ Eu-doped ZnCdO/ZnMgO superlattices grown by plasma-assisted molecular beam epitaxy
Anastasiia Lysak, Aleksandra Wierzbicka, Sergio Magalhaes +7
In situ Eu-doped ZnCdO-ZnMgO superlattices with varying ZnCdO:Eu and ZnMgO sublayers thicknesses were deposited by plasma assisted molecular beam epitaxy.