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S V Eremeev

Explore the profile of S V Eremeev including associated specialties, affiliations and a list of published articles. Areas
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Articles 35
Citations 224
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Recent Articles
1.
Eremeev S, Glazkova D, Poelchen G, Kraiker A, Ali K, Tarasov A, et al.
Nanoscale Adv . 2023 Nov; 5(23):6678-6687. PMID: 38024312
The discovery of a square magnetic-skyrmion lattice in GdRuSi, with the smallest so far found skyrmion size and without a geometrically frustrated lattice, has attracted significant attention. In this work,...
2.
Rusetsky V, Golyashov V, Eremeev S, Kustov D, Rusinov I, Shamirzaev T, et al.
Phys Rev Lett . 2022 Oct; 129(16):166802. PMID: 36306756
New spin-dependent photoemission properties of alkali antimonide semiconductor cathodes are predicted based on the detected optical spin orientation effect and DFT band structure calculations. Using these results, the Na_{2}KSb/Cs_{3}Sb heterostructure...
3.
Borisova S, Eremeev S, Rusina G, Chulkov E
Phys Chem Chem Phys . 2022 Feb; 24(8):5164-5170. PMID: 35165678
The interplay of the atomic structure and phonon spectra in a variety of two dimensional phases forming during submonolayer Pb adsorption on a Cu(001) surface has been investigated using embedded...
4.
Fedorov A, Poelchen G, Eremeev S, Schulz S, Generalov A, Polley C, et al.
J Phys Chem Lett . 2021 Aug; 12(34):8328-8334. PMID: 34428055
Discovered in 1962, the divalent ferromagnetic semiconductor EuS ( = 16.5 K, = 1.65 eV) has remained constantly relevant to the engineering of novel magnetically active interfaces, heterostructures, and multilayer...
5.
Eremeev S, Rusinov I, Koroteev Y, Vyazovskaya A, Hoffmann M, Echenique P, et al.
J Phys Chem Lett . 2021 Apr; 12(17):4268-4277. PMID: 33908787
Using density functional theory, we propose the (MnSbTe)·(SbTe) family of stoichiometric van der Waals compounds that harbor multiple topologically nontrivial magnetic phases. In the ground state, the first three members...
6.
Mihalyuk A, Utas T, Eremeev S, Hsing C, Wei C, Zotov A, et al.
J Chem Phys . 2021 Mar; 154(10):104703. PMID: 33722044
Using first-principles density functional theory calculations, we made an accurate structural characterization of the C superstructures self-assembled on the Tl-adsorbed Si(111) and Ge(111) surfaces, which finds a good agreement with...
7.
Borisova S, Eremeev S, Rusina G, Chulkov E
Phys Chem Chem Phys . 2020 Nov; 23(13):7814-7821. PMID: 33155011
The structure and magnetic properties of small Cr clusters, Cr and Cr, adsorbed on the Cu(111) surface have been investigated using density functional theory (DFT) calculations and their vibrational properties...
8.
Hirahara T, Otrokov M, Sasaki T, Sumida K, Tomohiro Y, Kusaka S, et al.
Nat Commun . 2020 Sep; 11(1):4821. PMID: 32973165
Materials that possess nontrivial topology and magnetism is known to exhibit exotic quantum phenomena such as the quantum anomalous Hall effect. Here, we fabricate a novel magnetic topological heterostructure MnBiTe/BiTe...
9.
Shikin A, Estyunin D, Klimovskikh I, Filnov S, Schwier E, Kumar S, et al.
Sci Rep . 2020 Aug; 10(1):13226. PMID: 32764583
Modification of the gap at the Dirac point (DP) in axion antiferromagnetic topological insulator [Formula: see text] and its electronic and spin structure have been studied by angle- and spin-resolved...
10.
Otrokov M, Klimovskikh I, Bentmann H, Estyunin D, Zeugner A, Aliev Z, et al.
Nature . 2019 Dec; 576(7787):416-422. PMID: 31853084
Magnetic topological insulators are narrow-gap semiconductor materials that combine non-trivial band topology and magnetic order. Unlike their nonmagnetic counterparts, magnetic topological insulators may have some of the surfaces gapped, which...