Search results for: FRUSTRATED MAGNETISM - Bridge of Knowledge

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Search results for: FRUSTRATED MAGNETISM

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Search results for: FRUSTRATED MAGNETISM

  • Zespół Fizyki Ciała Stałego

    Tematyka badawcza Katedry Fizyki Ciała Stałego obejmuje wytwarzanie i badanie materiałów dla energetyki (m.in. nanostruktury, sensory) o innowacyjnych właściwościach fizyko-chemicznych, tj: * kryształy, polikryształy, ceramika, szkło * materiały objętościowe, cienkie warstwy, nanomateriały * materiały metaliczne, półprzewodnikowe, nadprzewodnikowe, izolatory Tematyka badawcza obejmuje również badania symulacyjne i obliczeniowe...

  • Katedra Chemii Nieorganicznej

    * Opracowanie nowych metod syntezy nieorganicznej, odkrycie nowych typów reaktywności oraz katalizatorów użytecznych w ważnych procesach chemicznych. Badania koncentrują się wokół chemii kompleksów metali przejściowych z ligandami P-donorowymi oraz chemii pierwiastków grup głównych ze szczególnym uwzględnieniem fosforu i boru – aktualne kierunki badań: -reaktywne związki niskowalencyjnego fosforu – podobnie jak kompleksy karbenowe...

Other results Pokaż wszystkie wyniki (6)

Search results for: FRUSTRATED MAGNETISM

  • Chemical Pressure Tuning Magnetism from Pyrochlore to Triangular Lattices

    Publication
    • R. S. Dissanayaka Mudiyanselage
    • T. Klimczuk
    • D. Ni
    • R. J. Cava
    • W. Xie

    - INORGANIC CHEMISTRY - Year 2022

    Geometrically frustrated lattices combined with magnetism usually host quantum fluctuations that suppress magnetic orders and generate highly entangled ground states. Three-dimensionally (3D) frustrated magnets generally exist in the diamond and pyrochlore lattices, while two-dimensionally (2D) frustrated geometries contain Kagomé, triangular, and honeycomb lattices. In this work, we reported using chemical pressure to tune the magnetism...

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  • Evidence for SrHo2O4 and SrDy2O4 as model J1- J2 zigzag chain materials

    Publication
    • A. Fennell
    • V. Y. Pomjakushin
    • A. Uldry
    • B. Delley
    • B. Prévost
    • A. Désilets-Benoit
    • A. D. Bianchi
    • R. I. Bewley
    • B. R. Hansen
    • T. Klimczuk... and 2 others

    - PHYSICAL REVIEW B - Year 2014

    Neutron diffraction and inelastic spectroscopy is used to characterize the magnetic Hamiltonian of SrHo2O4 and SrDy2O4. Through a detailed computation of the crystal-field levels we find site-dependent anisotropic single-ion magnetism in both materials, and diffraction measurements show the presence of strong one-dimensional spin correlations.Our measurements indicate that competing interactions of the zigzag chain, combinedwith...

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  • Crystal Growth, Structure, and Magnetism of the 2D Spin 1/2 Triangular Lattice Material Rb3Yb(PO4)2

    Publication

    - CHEMISTRY OF MATERIALS - Year 2020

    The single-crystal growth, crystal structure, heat capacity, and anisotropic magnetization characterization of Rb3Yb- (PO4)2, a Yb-based triangular lattice material, are presented. Single-crystal X-ray diffraction shows that Rb3Yb(PO4)2 exhibits [Yb(PO4)]∞ layers, with the Yb in an ordered plane of equilateral triangles. One phosphate group oxygen that is not a near neighbor of the magnetic Yb displays positional disorder. The...

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  • (CsX)Cu5O2(PO4)2 (X = Cl, Br, I): A Family of Cu2+ S = 1/2 Compounds with Capped-Kagomé Networks Composed of OCu4 Units

    Publication

    - INORGANIC CHEMISTRY - Year 2019

    Three new salt inclusion compounds (CsX)Cu5O2(PO4)2 (X = Cl, Br, I), phosphate analogues of the kagomé mineral averievite, are reported. Their crystal structures are composed of trigonal networks of corner-sharing OCu4 anion-centered tetrahedra, forming capped-kagomé planes, which can also be regarded as two-dimensional slices along the [111] direction of a pyrochlore lattice. Magnetization and heat capacity measurements reveal...

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  • Noncentrosymmetric Triangular Magnet CaMnTeO6: Strong Quantum Fluctuations and Role of s0 versus s2 Electronic States in Competing Exchange Interactions

    Publication
    • X. Huai
    • E. Acheampong
    • E. Delles
    • M. J. Winiarski
    • M. Sorolla II
    • L. Nassar
    • M. Liang
    • C. Ramette
    • H. Ji
    • A. Scheie... and 3 others

    - ADVANCED MATERIALS - Year 2024

    Noncentrosymmetric triangular magnets offer a unique platform for realizing strong quantum fluctuations. However, designing these quantum materials remains an open challenge attributable to a knowledge gap in the tunability of competing exchange interactions at the atomic level. Here, a new noncentrosymmetric triangular S = 3/2 magnet CaMnTeO6 is created based on careful chemical and physical considerations. The model material...

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