Low‐temperature magnetic characteristics of tetrahedral CoCl42−. III. Magnetic exchange in paramagnetic Cs2CoCl4
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.433962
Reference29 articles.
1. Low‐Temperature Magnetic Characteristics of Tetrahedral CoCl4 2−. I. g‐Tensor Orientation in Doped [(C2H5)4N]2ZnCl4
2. Low‐Temperature Magnetic Characteristics of Tetrahedral CoCl4 2−. II. Nature of the Phase Transition in [(C2H5)4N]2CoCl4
3. A direct measurement of the large zero field splitting of Co2+ in Cs3CoCl5
4. Heat capacity measurements on Rb3CoCl5 compared with the Ising model
5. Magnetic properties and spin-lattice relaxation of CoCs3Cl5 and CoCs3Br5
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1. Quantifying and Controlling Entanglement in the Quantum Magnet Cs2CoCl4;Physical Review Letters;2021-07-13
2. Dynamic structure factor of the spin-12XXZ chain in a transverse field;Physical Review B;2016-08-22
3. New Family of Six Stable Metals with a Nearly Isotropic Triangular Lattice of Organic Radical Cations and Diluted Paramagnetic System of Anions: κ(κ⊥)-(BDH-TTP)4MX4·Solv, where M = CoII, MnII; X = Cl, Br, and Solv = (H2O)5, (CH2X2);Crystal Growth & Design;2016-01-27
4. Low-temperature ordered phases of the spin-12XXZ chain systemCs2CoCl4;Physical Review B;2015-01-28
5. Spin-12XXZChain SystemCs2CoCl4in a Transverse Magnetic Field;Physical Review Letters;2013-10-29
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