The magnetic properties (phase diagram, compensation temperature, magnetic susceptibility, and magnetization) of the AB p C 1Àp ternary alloy in the presence of a single-ion anisotropy on the B ions only are investigated by the use of a mean-field theory. Depending on the values of the parameters in
The ternary alloy with a structure of Prussian blue analogs in a transverse field
✍ Scribed by J. Dely; A. Bobák
- Publisher
- Elsevier Science
- Year
- 2007
- Tongue
- English
- Weight
- 426 KB
- Volume
- 399
- Category
- Article
- ISSN
- 0921-4526
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✦ Synopsis
The effects of applied transverse field on transition and compensation temperatures of the AB p C 1Àp ternary alloy consisting of spins S A ¼ 3 2 , S B ¼ 2, and S C ¼ 5 2 are investigated by the use of a mean-field theory. The structure and the spin values of the model correspond to the Prussian blue analog of the type ðFe II p Mn II 1Àp Þ 1:5 ½Cr III ðCNÞ 6 Á nH 2 O. We find that two or even three compensation points may be induced by a transverse field for the system with appropriate values of the parameters in the model Hamiltonian. In particular, the influence of a transverse field on the compensation point in the ground state is examined.
📜 SIMILAR VOLUMES
We measured the Lorentz angle in an argon þ 10% isobutane mixture using a Micromegas detector placed inside the CLAS-DVCS solenoid of Hall B at the Jefferson Laboratory. The primary goal of these tests was to validate Magboltz-based simulations developed for the implementation of Micromegas bulk det