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Related papers: c(2x2) Interface Alloys in Co/Cu Multilayers - Inf…

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We report \textit{ab initio} simulations of quantum transport properties of Fe/MgO/Fe trilayer structures with FeO$_{0.5}$ buffer iron oxide layer, where on-site Coulomb interaction is explicitly taken into account by local density…

Materials Science · Physics 2012-12-07 Vladimir Timoshevskii , Yibin Hu , É. Marcotte , Hong Guo

In this work, we present electronic and magnetic properties of CaMnO3 (CMO) as obtained from ab initio calculations. We identify the preferable magnetic order by means of density functional theory plus Hubbard U calculations and extract the…

MacDonald and co-workers recently predicted that high current densities could affect the magnetic order of antiferromagnetic (AFM) multilayers, in ways similar to those that occur in ferromagnetic (F) multilayers, and that changes in AFM…

Materials Science · Physics 2008-04-22 J. Bass , A. Sharma , Z. Wei , M. Tsoi

We study the Giant Magnetoresistance (GMR) ratio in magnetic multiayers with a single superconducting contact in the presence of spin-mixing processes. It has been recently shown that the GMR ratio of magnetic multilayers is strongly…

Mesoscale and Nanoscale Physics · Physics 2009-10-31 F. Taddei , S. Sanvito , C. J. Lambert

Van der Waals (vdW) heterostructures enable tailored electronic and magnetic phases by stacking atomically thin layers with pristine interfaces. Here, we investigate fully 2D Cr2Ge2Te6/WTe2 heterostructures and identify a strong enhancement…

Ferroelectric and ferromagnetic orders rarely coexist, and magnetoelectric coupling is even more scarce. A possible avenue for combining these orders is by interface design, where orders formed at the constituent materials can overlap and…

Strongly Correlated Electrons · Physics 2022-04-12 Gal Tuvia , Sapir Weitz Sobelman , Shay Sandik , Beena Kalisky , Yoram Dagan

Interfacial Dzyaloshinskii-Moriya interaction (DMI) has long been observed in normal metal/ferromagnetic multilayers, enabling the formation of chiral domain walls, skyrmions and other 2D antisymmetric spin textures confined within a single…

Materials Science · Physics 2023-05-12 Yu-Hao Huang , Chao-Chung Huang , Wei-Bang Liao , Tian-Yue Chen , Chi-Feng Pai

Intrinsic exchange bias is known as the unidirectional exchange anisotropy that emerges in a nominally single-component ferro-(ferri-)magnetic system. In this work, with magnetic and structural characterizations, we demonstrate that…

Materials Science · Physics 2024-09-11 Detian Yang , Yaohua Liu , Xiaoshan Xu

Cu/Co/Cu trilayers have been deposited on nanoporous alumina membranes. Magnetic properties of the resulting Co antidot arrays are investigated using SQUID magnetometry. Hysteresis loops of these arrays show two-step magnetization reversal.…

Materials Science · Physics 2015-05-19 F. Fettar , L. Cagnon , N. Rougemaille

We present a computational study of the adhesive and structural properties of the Al/Al2O3 interfaces as building blocks of the Metal-Insulator-Metal (MIM) tunnel devices, where electron transport is accomplished via tunnelling mechanism…

Mesoscale and Nanoscale Physics · Physics 2018-05-09 M. Koberidze , M. J. Puska , R. M. Nieminen

In this work we look into how the contact material influences the local charge properties of a p-type CdTe-based quantum well. We study five metals deposited as 10 nm layers on the sample surface: Au, Ag, Cr, Ni and Ti. We use…

The p-electrons of carbon in the interstitial compound Fe3C hybridize with the Fe d-band and enhance the valence electron concentration of Fe from 8 to 8.67. At this concentration, substitutional 3d transition metals and alloys exhibit…

Materials Science · Physics 2007-05-23 E. Duman , M. Acet , E. F. Wassermann , J. P. Itie , F. Baudelet , O. Mathon , S. Pascarelli

The interlayer quasi-chemical-bonding (QCB) interactions of two-dimensional (2D) layered materials promote the research field of interlayer-engineering and cause interlayer charge density redistributions (ICDRs). The ICDRs have been…

Materials Science · Physics 2026-03-11 Yu-Meng Gao , Nie-Wei Wang , Shi-Xuan Yuan , Wen-Xin Xia , Jiang-Long Wang , Xing-Qiang Shi

The giant magnetoresistance (GMR) and structure was investigated for electrodeposited Co/Cu multilayers prepared by a conventional galvanostatic/potentiostatic pulse combination from a pure sulfate electrolyte with various layer…

Materials Science · Physics 2017-02-06 N. Rajasekaran , J. Mani , B. G. Tóth , G. Molnár , S. Mohan , L. Péter , I. Bakonyi

Driving quantum phase transitions in the 3D topological insulators offers pathways to tuning the topological states and their properties. We use DFT-based calculations to systematically investigate topological phase transitions in…

Mesoscale and Nanoscale Physics · Physics 2024-01-17 Karunya Shirali , William A. Shelton , Ilya Vekhter

At interfaces between complex oxides it is possible to generate electronic systems with unusual electronic properties, which are not present in the isolated oxides. One important example is the appearance of superconductivity at the…

Superconductivity · Physics 2016-07-13 D. Di Castro , C. Cantoni , F. Ridolfi , C. Aruta , A. Tebano , N. Yang , G. Balestrino

We apply the previously developed theory of the resonant indirect exchange interaction to explain the ferromagnetic properties of the hybrid heterostructure consisting of a InGaAs-based quantum well (QW) sandwiched between GaAs barriers…

Mesoscale and Nanoscale Physics · Physics 2015-02-09 I. V. Rozhansky , I. V. Krainov , N. S. Averkiev , B. A. Aronzon , A. B. Davydov , K. I. Kugel , V. Tripathi , E. Lahderanta

Interface effect in complex oxide thin film heterostructures lies at the vanguard of current research to design technologically relevant functionality and explore emergent physical phenomena. While most of the previous works focus on the…

Materials Science · Physics 2019-01-30 B. C. Behera , Subhadip Jana , Shwetha G. Bhat , G. Tripathy , P. S. Anil Kumar , D. Samal

Oxide heterostructures have repeatedly been shown to display apical properties at the interfaces, some of which favorable to the formation of two-dimensional electron systems, as well as high transition temperature superconductivity. In…

Superconductivity · Physics 2022-12-21 Wai Hei Terence Tse , Carla Lupo , Evan Sheridan , Evgeny Plekhanov , Cedric Weber

The physical properties of two-dimensional van der Waals (2D vdW) crystals depend sensitively on the interlayer coupling, which is intimately connected to the stacking arrangement and the interlayer spacing. For example, simply changing the…

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