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Elementary excitations of the S =1/2 one-dimensional antiferromagnet KCuGaF_6 in a magnetic field and quantum sine-Gordon model

机译:磁场和量子正弦-戈登模型中S = 1/2一维反铁磁体KCuGaF_6的基本激发

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Elementary excitations of the S=1/2 one-dimensional Heisenberg antiferromagnet KCuGaF_6 with exchange constant J/k_B=103 K were investigated by high-frequency electron spin resonance (ESR) measurements combined with a pulsed high magnetic field. When an external magnetic field H is applied in KCuGaF_6, a staggered magnetic field h is induced perpendicular to H owing to the staggered g tensor and the Dzyaloshinsky-Moriya (DM) interaction with an alternating D vector. Consequently, KCuGaF_6 in a magnetic field is represented by the quantum sine-Gordon (SG) model. We observed many resonance modes including a soliton resonance, breathers, interbreather transitions, and two-breather excitation. Their resonance conditions are beautifully described by the quantum SG field theory with one adjustable parameter c_s=h/H. To investigate the relationship between the Curie term due to the DM interaction and the proportionality coefficient c_s, magnetic susceptibility measurements were also performed varying the external field direction.
机译:通过高频电子自旋共振(ESR)测量并结合脉冲高磁场,研究了交换常数为J / k_B = 103 K的S = 1/2一维Heisenberg反铁磁体KCuGaF_6的基本激发。当在KCuGaF_6中施加外部磁场H时,由于交错的g张量和Dzyaloshinsky-Moriya(DM)与交替的D向量相互作用,垂直于H感应出交错的磁场h。因此,磁场中的KCuGaF_6用量子正弦戈登(SG)模型表示。我们观察到许多共振模式,包括孤子共振,通气,呼吸间过渡和两呼吸激发。它们的共振条件由量子SG场论用一个可调节的参数c_s = h / H很好地描述。为了研究由于DM相互作用引起的居里项与比例系数c_s之间的关系,还通过改变外场方向进行了磁化率测量。

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