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- W2026348072 abstract "Magnetic resonance has been observed in the Ising system, DyPO4, utilizing a unique far-infrared laser-magnetic resonance spectrometer. Spectra were obtained at 220.23 μ (45.407 cm−1) and 171.67 μ (58.25 cm−1) at 4.2°K in applied fields (H∥C) sufficient to saturate the spin system. The radiation source was a pulsed-discharge gas laser (using H2O or D2O). The spectrometer employed a 90-kOe superconducting solenoid and a dual-beam detection system which electronically integrates the pulsed signals and records directly the percentage transmission. The resonance yields three super-imposed hyperfine patterns, due to even isotopes (I = 0); Dy(161) and Dy(163) both (I=52). All six lines of Dy(163) were resolved yielding a spin Hamiltonian constant (A/g∥) = 37.8×10−4 cm−1, while for Dy(161) only four components could be seen, giving (A/g∥) = 27.5×10−4 cm−1. The observed linewidth for all lines was 25 Oe. The slope of the splitting between the two I = 0 resonances observed at 53 340 Oe and 67 590 Oe yields g∥ = 19.3. The data indicates there is little departure from a linear Zeeman splitting at these high fields, and by extrapolation the antiferromagnetic zero field splitting is obtained. The zero field splitting agrees with the earlier spectroscopic results [J. C. Wright and H. W. Moos, Phys. Lett. 29 A, (1969).] only if an effective field of 1.3 kOe is added to the total dipolar field in the saturated state, indicating additional long-range forces. The full version of this paper is being prepared for publication." @default.
- W2026348072 created "2016-06-24" @default.
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- W2026348072 date "1971-03-15" @default.
- W2026348072 modified "2023-09-28" @default.
- W2026348072 title "Far-Infrared Laser Study of Magnetic Resonance in DyPO4" @default.
- W2026348072 doi "https://doi.org/10.1063/1.1660348" @default.
- W2026348072 hasPublicationYear "1971" @default.
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