Topological phase transition of decoupling quasi-two-dimensional vortex pairs in La1–ySmyMnO3 + δ (y = 0.85, 1.0)
- Autores: Bukhanko F.N.1, Bukhanko A.F.1
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Afiliações:
- Donetsk Physicotechnical Institute
- Edição: Volume 61, Nº 10 (2016)
- Páginas: 1531-1540
- Seção: Physics of Nanostructures
- URL: https://ogarev-online.ru/1063-7842/article/view/198250
- DOI: https://doi.org/10.1134/S1063784216100091
- ID: 198250
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Resumo
Characteristic signs of the universal Nelson–Kosterlitz jump of the superconducting liquid density in the temperature dependences of the magnetization of La1–ySmyMnO3 + δ samples with samarium concentrations y = 0.85 and 1.0, which are measured in magnetic fields 100 Oe ≤ H ≤ 3.5 kOe, are detected. As the temperature increases, the sample with y = 0.85 exhibits a crescent-shaped singularity in the dc magnetization curve near the critical temperature of decoupling vortex–antivortex pairs (TKT ≡ Tc ≈ 43 K), which is independent of measuring magnetic field H and is characteristic of the dissociation of 2D vortex pairs. A similar singularity is also detected in the sample with a samarium concentration y = 1.0 at a significantly lower temperature (TKT ≈ 12 K). The obtained experimental results are explained in terms of the topological Kosterlitz–Thouless phase transition of dissociation of 2D vortex pairs in a quasi-two-dimensional weak Josephson coupling network.
Sobre autores
F. Bukhanko
Donetsk Physicotechnical Institute
Email: afbuhanko@mail.ru
Ucrânia, Donetsk, 03680
A. Bukhanko
Donetsk Physicotechnical Institute
Autor responsável pela correspondência
Email: afbuhanko@mail.ru
Ucrânia, Donetsk, 03680
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