1968Journal of Applied PhysicsRequires access

Proton Magnetic Resonance Study of Magnetic Ordering in Two Cupric Salts

S. Wittekoek, N.J. Poulis

Open publisher page 22 citations

Abstract

The shifts and the widths of the proton magnetic resonance lines in two Cu2+ salts have been studied to obtain information about the antiferromagnetic short-range order in these crystals. In Cu(NH3)4SO4·H2O, where the Cui+ spins order in antiferromagnetic linear chains, the resonance lines show a strong broadening at decreasing temperatures. This is explained by the decrease of the fluctuations of the Cu2+ spins due to the forming of antiferromagnetic clusters. The experimental results are in agreement with a simple model, relating the fluctuations and the susceptibility of the Cui+ spins. In Cu(NO3)2·3H2O measurements of the lineshifts show that the Cu2+ spins order antiferromagnetically in pairs. No broadening of the PMR lines is observed, which is explained by the absence of cluster forming.

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What this paper is about

The shifts and the widths of the proton magnetic resonance lines in two Cu2+ salts have been studied to obtain information about the antiferromagnetic short-range order in these crystals. In Cu(NH3)4SO4·H2O, where the Cui+ spins order in antiferromagnetic linear chains, the resonance lines show a strong broadening at decreasing temperatures. This is explained by the decrease of the fluctuations of the Cu2+ spins due to the forming of antiferromagnetic clusters. The experimental results are in agreement with a simple model, relating the fluctuations and the susceptibility of the Cui+ spins. In Cu(NO3)2·3H2O measurements of the lineshifts show that the Cu2+ spins order antiferromagnetically in pairs. No broadening of the PMR lines is observed, which is explained by the absence of cluster forming.

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Available abstract

The shifts and the widths of the proton magnetic resonance lines in two Cu2+ salts have been studied to obtain information about the antiferromagnetic short-range order in these crystals. In Cu(NH3)4SO4·H2O, where the Cui+ spins order in antiferromagnetic linear chains, the resonance lines show a strong broadening at decreasing temperatures. This is explained by the decrease of the fluctuations of the Cu2+ spins due to the forming of antiferromagnetic clusters. The experimental results are in agreement with a simple model, relating the fluctuations and the susceptibility of the Cui+ spins. In Cu(NO3)2·3H2O measurements of the lineshifts show that the Cu2+ spins order antiferromagnetically in pairs. No broadening of the PMR lines is observed, which is explained by the absence of cluster forming.

Key concepts: Antiferromagnetism, Spins, Resonance (particle physics), Condensed matter physics, Proton, Chemistry, Proton magnetic resonance, Magnetic susceptibility

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