论文标题
外部电场直接控制NDMN2O5中的磁性手性
Direct control of magnetic chirality in NdMn2O5 by external electric field
论文作者
论文摘要
已经使用非极化和极化的中子衍射技术对多效NDMN2O5的单个晶体进行了详细研究。低于TN = 30.5 K磁性bragg反射,与传播载体K1 =(0.5 0 Kz1)相对应的对应于非手续类型的磁性结构。在大约27 K以下发生了具有相似矢量Kz2的新变形磁调制,这归因于Mn-sub-lattice对ND3+离子的磁化。根据样品的冷却或加热病史,观察到NDMN2O5中不稳定的磁相的出现中的强温度滞后。低于20 K,磁性结构变成了手性类型。从球形中子偏振仪测量值中,所得的低温磁性结构KZ3通过一般椭圆螺旋近似。确定了与晶体结构有关的磁性螺旋状椭圆度和螺旋平面方向的参数。螺旋的重新定位发生在4 K和18 K之间的中间温度下。在没有外部电场的情况下冷却时,在较生长的晶体中观察到右手和左手手性域之间的差异约为0.2。磁性手性比率可以通过使用几个kV/cm的外部电场来改变,从而揭示了强磁电耦合。发现磁性手学对NDMN2O5中施加的电场的线性依赖性。在Dzyaloshinsky-Moria相互作用的反对称超交换模型的框架内讨论了结果。
Detailed investigation of the incommensurate magnetic ordering in a single crystal of multiferroic NdMn2O5 has been performed using both non-polarized and polarized neutron diffraction techniques. Below TN = 30.5 K magnetic Bragg reflections corresponding to the non-chiral type magnetic structure with propagation vector k1 = (0.5 0 kz1) occurs. Below about 27 K a new distorted magnetic modulation with a similar vector kz2 occurs, which is attributed to the magnetization of the Nd3+ ions by the Mn-sub-lattice. Strong temperature hysteresis in the occurrence of the incommensurate magnetic phases in NdMn2O5 was observed depending on the cooling or heating history of the sample. Below about 20 K the magnetic structure became of a chiral type. From spherical neutron polarimetry measurements, the resulting low-temperature magnetic structure kz3 was approximated by the general elliptic helix. The parameters of the magnetic helix-like ellipticity and helical plane orientation in regard to the crystal structure were determined. A reorientation of the helix occurs at an intermediate temperature between 4 K and 18 K. A difference between the population of right- and left-handed chiral domains of about 0.2 was observed in the as-grown crystal when cooling without an external electric field. The magnetic chiral ratio can be changed by the application of an external electric field of a few kV/cm, revealing strong magnetoelectric coupling. A linear dependence of the magnetic chirality on the applied electric field in NdMn2O5 was found. The results are discussed within the frame of the antisymmetric super-exchange model for Dzyaloshinsky-Moria interaction.