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On the room temperature multiferroic BiFeO_3: Magnetic, dielectric and thermal properties

机译:在室温下多铁性BiFeO_3:磁,介电和热性能

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Magnetic dc susceptibility between 1.5 and 800 K, ac susceptibility and magnetization, thermodynamic properties, temperature dependence of radio and audio-wave dielectric constants and conductivity, contact-free dielectric constants at mm-wavelengths, as well as ferroelectric polarization are reported for single crystalline BiFeO _3. A well developed anomaly in the magnetic susceptibility signals the onset of antiferromagnetic order close to 635 K. Beside this anomaly no further indications of phase or glass transitions are indicated in the magnetic dc and ac susceptibilities down to the lowest temperatures. The heat capacity has been measured from 2 K up to room temperature and significant contributions from magnon excitations have been detected. From the low-temperature heat capacity an anisotropy gap of the magnon modes of the order of 6 meV has been determined. The dielectric constants measured in standard two-point configuration are dominated by Maxwell-Wagner like effects for temperatures T > 300 K and frequencies below 1 MHz. At lower temperatures the temperature dependence of the dielectric constant and loss reveals no anomalies outside the experimental errors, indicating neither phase transitions nor strong spin phonon coupling. The temperature dependence of the dielectric constant was measured contact free at microwave frequencies. At room temperature the dielectric constant has an intrinsic value of 53. The loss is substantial and strongly frequency dependent indicating the predominance of hopping conductivity. Finally, in small thin samples we were able to measure the ferroelectric polarization between 10 and 200 K. The saturation polarization is of the order of 40 μC/cm ~2, comparable to reports in literature.
机译:据报道,单晶硅的磁直流磁化率介于1.5和800 K之间,交流磁化率和磁化强度,热力学性质,无线电和音频波的介电常数和电导率与温度有关,毫米波长处的非接触介电常数以及铁电极化BiFeO _3。磁化率的高度发达异常表明反铁磁阶跃接近635K。除此异常外,在最低温度下,直流磁化和交流磁化率均未显示相变或玻璃化转变的进一步迹象。测量了从2 K到室温的热容量,并且检测到了磁振子激发的重要贡献。根据低温热容量,已经确定了6meV量级的磁振子模式的各向异性间隙。在标准两点配置下测得的介电常数受麦克斯韦-瓦格纳像温度T> 300 K和频率低于1 MHz的效应所控制。在较低的温度下,介电常数和损耗的温度依赖性在实验误差范围内没有发现异常,这表明既没有相变也没有强自旋声子耦合。在微波频率下无接触地测量介电常数的温度依赖性。在室温下,介电常数的内在值为53。损耗是很大的,并且与频率密切相关,这表明跳频电导率占主导地位。最后,在小的薄样品中,我们能够测量10至200 K之间的铁电极化。饱和极化约为40μC/ cm〜2,可与文献报道相媲美。

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