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- W1982526628 abstract "The magnetic structure of Er with a magnetic field applied in the hexagonal basal plane has been studied using a combination of experimental techniques and mean-field modeling. From neutron-scattering and magnetization measurements, phase diagrams are constructed. At temperatures above approximately 20 K, the application of a field is found to favor cycloidal structures with modulation wave vectors of ${mathbf{q}}_{mathit{c}}$=(6/23)${mathbf{c}}^{mathrm{*}}$,(4/15)${mathbf{c}}^{mathrm{*}}$, and (2/7)${mathbf{c}}^{mathrm{*}}$. For fields above ensuremath{approxeq}40 kOe, the (2/7) structure dominates the phase diagram. From a detailed study of this most stable cycloid, we determine how it distorts as the field is increased. In low fields, there is a spin reorientation, so that the plane of the cycloid becomes perpendicular to the applied field, while in larger fields, the cycloid collapses through a series of fanlike structures. At lower temperatures, as the field is increased there is a first-order transition at ensuremath{approxeq}20 kOe from a cone to a fan in the a-c plane." @default.
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- W1982526628 date "1994-08-01" @default.
- W1982526628 modified "2023-09-25" @default.
- W1982526628 title "Collapsing cycloidal structures in the magnetic phase diagram of erbium" @default.
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- W1982526628 doi "https://doi.org/10.1103/physrevb.50.3085" @default.
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