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首页> 外文期刊>Journal of Low Temperature Physics >Field-Induced Gap in the Spin-1/2 Heisenberg Chain Compound Cu-Pyrimidine Dinitrate: ESR Studies in Magnetic Fields up to 63 T
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Field-Induced Gap in the Spin-1/2 Heisenberg Chain Compound Cu-Pyrimidine Dinitrate: ESR Studies in Magnetic Fields up to 63 T

机译:自旋1/2 Heisenberg链化合物Cu-嘧啶精矿中的磁场诱导间隙:高达63 T的磁场中的ESR研究

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摘要

Results of electron spin resonance studies of copper pyrimidine dinitrate (Cu-PM, [PM-Cu(NO_3)_2(H_2O)_2]_n, PM = pyrimidine), a spin-1/2 antiferromagnetic chain material with alternating g-tensor and Dzyaloshinskii-Moriya interactions, in pulsed magnetic fields up to 63 T are reported. The field-induced gap shows a non-monotonic behavior with a minimum in the vicinity of the saturation field H_(sat) = 48.5 T. This is associated with a transition from the sine-Gordon region to a spin-polarized state with magnon excitations. By comparing the entire set of experimental data with results of density matrix renormalization group calculations for Cu-PM, the validity of the used theoretical approach is proven.
机译:具有交替g张力和自旋1/2的自旋1/2反铁磁链材料的亚硝酸嘧啶铜(Cu-PM,[PM-Cu(NO_3)_2(H_2O)_2] _n,PM =嘧啶)的电子自旋共振研究结果据报道,在高达63 T的脉冲磁场中,Dzyaloshinskii-Moriya相互作用。磁场引起的间隙显示出非单调行为,在饱和场H_(sat)= 48.5 T附近最小。这与从正弦-戈登区域到具有磁振子激发的自旋极化态的跃迁有关。通过将整个实验数据集与针对Cu-PM的密度矩阵重归一化组计算的结果进行比较,证明了所用理论方法的有效性。

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