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Type-II multiferroic materials, in which ferroelectric polarization is induced by inversion non-symmetric magnetic order, promise new and highly efficient multifunctional applications based on mutual control of magnetic and electric properties. However, to date this phenomenon is limited to low temperatures. Here we report giant pressure-dependence of the multiferroic critical temperature in CuBr2: at 4.5 GPa it is enhanced from 73.5 to 162 K, to our knowledge the highest TC ever reported for non-oxide type-II multiferroics. This growth shows no sign of saturating and the dielectric loss remains small under these high pressures. We establish the structure under pressure and demonstrate a 60\% increase in the two-magnon Raman energy scale up to 3.6 GPa. First-principles structural and magnetic energy calculations provide a quantitative explanation in terms of dramatically pressure-enhanced interactions between CuBr2 chains. These large, pressure-tuned magnetic interactions motivate structural control in cuprous halides as a route to applied high-temperature multiferroicity.
The genus Paharia Distant, 1905 is reviewed based on the description of a new species, Paharia oorschoti sp. nov., and redescription of the allied Paharia putoni (Distant, 1892), both from Turkey. The relationships among Paharia, Subpsaltria Chen, 1943 and Tibicina Kolenati, 1857 of the tribe Tibicinini Distant, 1905 are discussed. The morphology of the exuviae of Pa. oorschoti sp. nov. and S. yangi Chen 1943 is described and compared. Tibicina insidiosa Boulard, 1977 is transferred to Paharia to become Paharia insidiosa comb. nov. A key to all species of Paharia is provided.