Multiferroics Project, ERATO, Japan Science and Technology Agency (JST), Wako, Saitama 351-0198, Japan.
Phys Rev Lett. 2010 Dec 17;105(25):257201. doi: 10.1103/PhysRevLett.105.257201. Epub 2010 Dec 13.
Magnetic and magnetoelectric (ME) properties have been studied for single crystals of Sc-doped M-type barium hexaferrites. Magnetization (M) and neutron diffraction measurements revealed that by tuning Sc concentration a longitudinal conical state is stabilized up to above room temperatures. ME measurements have shown that a transverse magnetic field (H) can induce electric polarization (P) at lower temperatures and that the spin helicity is nonvolatile and endurable up to near the conical magnetic transition temperature. It was also revealed that the response (reversal or retention) of the P vector upon the reversal of M varies with temperature. In turn, this feature allows us to control the relation between the spin helicity and the M vectors with H and temperature.
已对掺钪 M 型钡铁氧体单晶的磁性和磁电(ME)性质进行了研究。磁化强度(M)和中子衍射测量表明,通过调整 Sc 浓度,可以稳定到高于室温的纵向锥形状态。ME 测量表明,在较低温度下,横向磁场(H)可以诱导电极化(P),并且自旋螺旋度是不可挥发的,并且可以耐受直到接近锥形磁转变温度。还揭示了 P 矢量在 M 反转时的响应(反转或保持)随温度而变化。反过来,这一特征使我们能够控制 H 和温度之间自旋螺旋度与 M 矢量之间的关系。