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Finite-Temperature Spin Dynamics in a Perturbed Quantum Critical Ising Chain with an E8 Symmetry

机译:具有E8对称性的扰动量子临界Ising链中的有限温度自旋动力学

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摘要

A spectrum exhibiting E8 symmetry is expected to arise when a small longitudinal field is introduced in the transverse-field Ising chain at its quantum critical point. Evidence for this spectrum has recently come from neutron scattering measurements in cobalt niobate, a quasi-one-dimensional Ising ferromagnet. Unlike its zero-temperature counterpart, the finite-temperature dynamics of the model has not yet been determined. We study the dynamical spin structure factor of the model at low frequencies and nonzero temperatures, using the form factor method. Its frequency dependence is singular, but differs from the diffusion form. The temperature dependence of the nuclear magnetic resonance (NMR) relaxation rate has an activated form, whose prefactor we also determine. We propose NMR experiments as a means to further test the applicability of the E8 description for CoNb2O6.
机译:当在横向场Ising链的量子临界点引入小的纵向场时,预计会出现表现出E8对称性的光谱。最近,这种光谱的证据来自于铌酸钴(准一维伊辛铁磁体)中子散射测量。与零温度模型不同,该模型的有限温度动力学尚未确定。我们使用形状因子方法研究了低频和非零温度下模型的动态自旋结构因子。它的频率依赖性是奇异的,但不同于扩散形式。核磁共振(NMR)弛豫速率的温度依赖性具有激活形式,我们也要确定其因子。我们建议进行NMR实验,以进一步测试E8描述对CoNb2O6的适用性。

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