Посилання:Magnetic properties of the spin-1 chain compound NiCl₃C6H5CH₂CH₂NH₃ / F. Lipps, A.H. Arkenbout, A. Polyakov, M. Günther, T. Salikhov, E. Vavilova, H.H. Klauss, B. Büchner, T.M. Palstra, and V. Kataev // Физика низких температур. — 2018. — Т. 44, № 11. — С. 1626-1633. — Бібліогр.: 28 назв. — англ.
Підтримка:This work was supported in parts by the Deutsche
Forschungsgemeinschaft (DFG) through projects FOR912
and KA 1694/8-1, by the Dieptestrategie of the Zernike Institute for Advanced Materials, and by the Erasmus + ICM
Program of the European Union.
We report experimental results of the static magnetization, ESR and NMR spectroscopic measurements of the Ni-hybrid compound NiCl₃C6H5CH₂CH₂NH₃. In this material NiCl³ octahedra are structurally arranged in chains along the crystallographic a axis. According to the static susceptibility and ESR data Ni²⁺ spins S = 1 are isotropicand are coupled antiferromagnetically (AFM) along the chain with the exchange constant J = 25.5 K. These are important prerequisites for the realization of the so-called Haldane spin-1 chain with the spin-singlet ground state and a quantum spin gap. However, experimental results evidence AFM order at TN ≈ 10 K presumably due to small interchain couplings. Interestingly, frequency-, magnetic field-, and temperature-dependent ESR measurements, as well as the NMR data, reveal signatures which could presumably indicate an inhomogeneous ground state of coexistent mesoscopically spatially separated AFM ordered and spin-singlet state regions similar to the situation observed before in some spin-diluted Haldane magnets.