We have stabilized the {\alpha}-Fe1.6Ga0.4O3 (Ga doped {\alpha}-Fe2O3) system in rhombohedral structure. The system has shown magnetically canted ferromagnetic state and ferroelectric properties at room temperature. In first time, we confirm the existence of magneto-electric coupling and multiferro-electric properties at room temperature in the Ga doped {\alpha}-Fe2O3 system based on the experimental observation of magnetic field controlled electric polarization and electric field controlled magnetization. The {\alpha}-Fe2O3 system does not exhibit electric field controlled magnetic exchange bias effect, where as Ga doped {\alpha}-Fe2O3 showed exchange bias shift up to the value of 370 Oe. We have recorded the response of current-voltage characteristics and in-field magnetic relaxation of the system under the simultaneous application of magnetic and electric fields. The magnetization of the system is found highly sensitive to the ON and OFF modes, as well as change of the polarity of external electric field. The system is a new addition in the list of non-traditional magneto-electrics/multi-ferroelectrics so far reported in literature. Such novel materials, where magnetization and electric polarization can be controlled by simultaneous application of magnetic and electric fields, is in the increasing demand for potential applications in the field of next generation magnetic sensor, switching, non-volatile memory and spintronic devices.
翻译:我们首次确认,在磁场控制电极和电场控制磁场的实验观测基础上,Ga doped ALpha}-Fe2O3的磁电联动和多发电电效应系统已经稳定了Rhombohedr结构中的磁力控制磁场交换偏差效应。系统已经显示磁能控制铁磁磁场和电电磁电场的同步观测结果,在Ga doped ALpha}-Fe2O3中,磁电磁电动和电电电电电电电电磁电磁电磁电磁电动系统没有显示电场控制磁交换偏差效应,Ga doped ALpha}-Fe2O3的电磁场和电铁电磁电磁电磁电磁电磁电场的极变异性应用潜力在不断上升的磁电磁场和电磁磁电磁场中是新的。 磁磁力场和电磁力场的电磁力变异化应用是新数据,磁场的磁场和磁场中的非电磁变变。