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Polarization analysis of low-energy excitations in single-domain Cr

机译:单畴铬中低能激发的极化分析

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摘要

The longitudinal and transverse spin fluctuations in single-domain Cr have been investigated in the transverse spin-density-wave phase using constant energy scans with 4 <= E <= 25 meV and polarization analysis. The transverse excitations show well-defined peaks centered at the incommensurate satellite positions (1 +- #delta# 00) and a broad peak at the commensurate (100) position. The longitudinal fluctuations exhibit a much more complicated structure due to the additional appearance of magnetic excitations below 9 meV (Fincher-Burke modes). The fluctuations with longitudinal polarization show a pronounced renormalization between 136 and 230 K raising the possibility that the Fincher-Burke modes are responsible for the phase transition at T_N. Above E approx= 18 meV, the longitudinal fluctuations decrease with increasing E at T = 230 K in contrast to the transverse fluctuations. Our results indicate that unpolarized beam data is not really useful for making comparisons with existing theories. There is an urgent need to extend polarization analysis to higher neutron energies.
机译:使用4 <= E <= 25 meV的恒定能量扫描和极化分析,已经在横向自旋密度波相位中研究了单畴Cr中的纵向和横向自旋波动。横向激励显示出在不相称的卫星位置(1 +-#delta#00)中心的明确定义的峰,在相称(100)位置的宽峰。由于出现了低于9 meV的磁激励(Fincher-Burke模式),因此纵向波动表现出更为复杂的结构。带有纵向极化的波动表明在136和230 K之间有明显的重新归一化,这增加了Fincher-Burke模负责T_N处的相变的可能性。在E大约= 18 meV以上时,与横向波动相反,在T = 230 K处,纵向波动随着E的增加而减小。我们的结果表明,非偏振光束数据对于与现有理论进行比较并没有真正的帮助。迫切需要将极化分析扩展到更高的中子能量。

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