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Functional renormalization group approach to SU(N) Heisenberg models: Momentum-space renormalization group for the large-N limit

机译:苏(N)Heisenberg模型的功能重整组方法:大n限制的动量空间重整组

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In frustrated magnetism, making a stringent connection between microscopic spin models and macroscopic properties of spin liquids remains an important challenge. A recent step towards this goal has been the development of the pseudofermion functional renormalization group approach (pf-FRG) which, building on a fermionic parton construction, enables the numerical detection of the onset of spin liquid states as temperature is lowered. In this work, focusing on the SU(N) Heisenberg model at large N, we extend this approach in a way that allows us to directly enter the low-temperature spin liquid phase, and to probe its character. Our approach proceeds in momentum space, making it possible to keep the truncation minimalistic, while also avoiding the bias introduced by an explicit decoupling of the fermionic parton interactions into a given channel. We benchmark our findings against exact mean-field results in the large-N limit, and show that even without prior knowledge the pf-FRG approach identifies the correct mean-field decoupling channel. On a technical level, we introduce an alternative finite temperature regularization scheme that is necessitated to access the spin liquid ordered phase. In a companion paper [Buessen et al., Phys. Rev. B 97, 064415 (2018)] we present a different set of modifications of the pf-FRG scheme that allow us to study SU(N) Heisenberg models (using a real-space RG approach) for arbitrary values of N, albeit only up to the phase transition towards spin liquid physics.
机译:在沮丧的磁性中,在微观旋转模型和旋转液体的宏观性质之间进行严谨的连接,旋转液体仍然是一个重要的挑战。最近迈出了这一目标的一步一直是伪梅子功能重整化群体方法(PF-FRG)的发展,该方法在Fermionic Parton结构上构建,使得旋转液态爆发的数值检测降低。在这项工作中,专注于SU(N)Heisenberg模型,我们以允许我们直接进入低温旋转液相的方式扩展这种方法,并探测其特征。我们的方法在动量空间中进行,使得可以保持截断简约,同时还避免了通过将Fermionic Parton相互作用的明确去耦引入给定通道的偏差。我们将我们的调查结果反对精确的平均字段,在大n限制中,表明即使没有先验知识,PF-FRG方法也标识了正确的平均场去耦信道。在技​​术水平上,我们介绍了一种替代的有限温度正则化方案,必须进入旋转液体有序相。在伴侣论文中[Buessen等人。,phy。 Rev. B 97,064415(2018)]我们提出了一种不同的PF-FRG方案的修改,使我们允许我们研究SU(n)Heisenberg模型(使用实际空间RG方法),用于n的任意值,尽管是仅达到旋转液体物理的相位过渡。

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