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首页> 外文期刊>Physical Review. B, Condensed Matter >Frustrated honeycomb-lattice bilayer quantum antiferromagnet in a magnetic field: Unconventional phase transitions in a two-dimensional isotropic Heisenberg model
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Frustrated honeycomb-lattice bilayer quantum antiferromagnet in a magnetic field: Unconventional phase transitions in a two-dimensional isotropic Heisenberg model

机译:磁场中沮丧的蜂窝-晶格双层量子反铁磁体:二维各向同性海森堡模型中的非常规相变

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摘要

We consider the spin-1/2 antiferromagnetic Heisenberg model on a bilayer honeycomb lattice including interlayer frustration in the presence of an external magnetic field. In the vicinity of the saturation field, we map the low-energy states of this quantum system onto the spatial configurations of hard hexagons on a honeycomb lattice. As a result, we can construct effective classical models (lattice-gas as well as Ising models) on the honeycomb lattice to calculate the properties of the frustrated quantum Heisenberg spin system in the low-temperature regime. We perform classical Monte Carlo simulations for a hard-hexagon model and adopt known results for an Ising model to discuss the finite-temperature order-disorder phase transition that is driven by a magnetic field at low temperatures. We also discuss an effective-model description around the ideal frustration case and find indications for a spin-flop-like transition in the considered isotropic spin model.
机译:我们考虑在双层蜂窝晶格上的自旋1/2反铁磁海森堡模型,该层包括在存在外部磁场的情况下的层间挫折。在饱和场附近,我们将此量子系统的低能态映射到蜂窝晶格上硬六边形的空间构型。结果,我们可以在蜂窝晶格上构建有效的经典模型(晶格气体和Ising模型),以计算低温状态下受挫的量子Heisenberg自旋系统的性质。我们对硬六边形模型执行经典的蒙特卡洛模拟,并针对伊辛模型采用已知的结果来讨论由低温磁场驱动的有限温度有序-无序相变。我们还讨论了围绕理想挫折情况的有效模型描述,并在考虑的各向同性自旋模型中找到了类似自旋触发器的过渡的迹象。

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  • 来源
    《Physical Review. B, Condensed Matter》 |2017年第9期|094419.1-094419.11|共11页
  • 作者单位

    Institute for Condensed Matter Physics, National Academy of Sciences of Ukraine, Svientsitskii Street 1, 79011 L'viv, Ukraine ,Department for Theoretical Physics, Ivan Franko National University of L'viv, Drahomanov Street 12, 79005 L'viv, Ukraine;

    Institute for Condensed Matter Physics, National Academy of Sciences of Ukraine, Svientsitskii Street 1, 79011 L'viv, Ukraine;

    Institute for Condensed Matter Physics, National Academy of Sciences of Ukraine, Svientsitskii Street 1, 79011 L'viv, Ukraine ,Department for Theoretical Physics, Ivan Franko National University of L'viv, Drahomanov Street 12, 79005 L'viv, Ukraine ,Institut für theoretische Physik Otto-von-Guericke-Universität Magdeburg, P.O. Box 4120, 39016 Magdeburg, Germany ,Abdus Salam International Centre for Theoretical Physics, Strada Costiera 11, 34151 Trieste, Italy;

    Universitätsrechenzentrum, Otto-von-Guericke-Universität Magdeburg, P.O. Box4120, 39016Magdeburg, Germany;

    Institut für theoretische Physik Otto-von-Guericke-Universität Magdeburg, P.O. Box 4120, 39016 Magdeburg, Germany;

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