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- W2022087247 abstract "The effect of pressure on CeB 6 was investigated by the measurement of the magnetization ( M ) under pressure, and we obtained the following results. The effect of pressure on M in phase I is very small. By applying pressure, T Q is enhanced, but T N and the critical field from the antiferromagnetic (AFM) phase III to the antiferro-quadrupole (AFQ) phase II ( H c III–II ) are suppressed, as previously reported. The magnetization curve in phase III shows the characteristic shoulder at H ∼ H c III–II /2 at ambient pressure. This shoulder becomes much more pronounced by applying pressure. Both H c III–II and the magnetic field, where a shoulder is seen in the magnetization curve in phase III, are largely suppressed by pressure. In phase II, the M – T curve at a low magnetic field exhibits an unusual concave temperature dependence below T Q down to T N . Thus, we found that the lower the magnetic field, the larger the enhancement of M in both phases III and II. To clarify the origin of the unusual pressure effect of M , we performed a mean-field calculation for the 4-sublattice model using the experimental results of d T Q /d P >0 and d T N /d P <0 and assuming the positive pressure dependence of the T x y z -antiferro-octupole (AFO) interaction. The characteristic features of the pressure effect of M obtained by the experiments could be reproduced well by the mean-field calculation. We found that the origin of the characteristic effect of pressure on CeB 6 is the change in the subtle balance between the AFM interaction and the magnetic field-induced-effective FM interaction induced by the coexistence of the O x y –AFQ and T x y z –AFO interactions under pressure." @default.
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- W2022087247 date "2007-06-15" @default.
- W2022087247 modified "2023-09-30" @default.
- W2022087247 title "Unusual Enhancement of Magnetization by Pressure in the Antiferro-Quadrupole-Ordered Phase in CeB<sub>6</sub>" @default.
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- W2022087247 doi "https://doi.org/10.1143/jpsj.76.064716" @default.
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