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Antiferromagnetic resonance in Bi_2CuO_4

机译:anti ferromagnetic resonance in BI_2Cu O_4

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摘要

Magnetic resonance of the low-frequency spin-wave branch in the Bi_2CuO_4 antiferromagnet with an easy-plane anisotropy has been studied. Angular, frequency, and temperature dependences of the position and width of the antiferromagnetic resonance (AFMR) line have been measured. Our measurements combined with earlier data [H. Ochta, K. Yoshida, T. Matsuya, T. Nanba, M. Motokawa, K. Yamada, Y. Endon, and S. Hosoya, J. Phys. Soc. Jpn. 61, 2921 (1992); E. W. Ong, G. H. Kwei, R. A. Robinson, B. L. Ramakrishna, and R. B. von Dreele, Phys. Rev. B 42, 4255 (1990)] have allowed us to determine anisotropy constants of this material and to account for the unusual character of its static susceptibility anisotropy. The AFMR line shifts to the high-field side and broadens in a temperature range of 10-15 K, and the cause of this has remained unclear. In the low-temperature range the line shows a hysteresis corresponding to a static field magnitude several times as large as the spin-flop field. The position and width of the AFMR line depend sensitively on the sample preparation technique.
机译:研究了Bi_2CuO_4反铁磁体中具有易平面各向异性的低频自旋波分支的磁共振。已经测量了反铁磁共振(AFMR)线的位置和宽度的角度,频率和温度依赖性。我们的测量与早期数据相结合[H. Ochta,K.Yoshida,T.Matsuya,T.Nanba,M.Motokawa,K.Yamda,Y.Endon和S.Hosoya,J。 Soc。日本。 61,2921(1992); E. W. Ong,G。H. Kwei,R。A. Robinson,B。L. Ramakrishna和R. B. von Dreele,物理学Rev. B 42,4255(1990)]已经使我们能够确定这种材料的各向异性常数,并解释了其静态磁化率各向异性的特殊性质。 AFMR线移至高场侧并在10-15 K的温度范围内变宽,其原因仍不清楚。在低温范围内,该线显示的磁滞对应于静态磁场强度,其大小是自旋场的几倍。 AFMR线的位置和宽度敏感地取决于样品制备技术。

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