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Fractional exclusion statistics and thermodynamics of the Hubbard chain in the spin-incoherent Luttinger liquid regime

机译:旋转非连贯液体制度中屋顶链的分数排除统计与热力学

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摘要

Bethe ansatz and bosonization procedures are used to describe the thermodynamics of the strong-coupled Hubbard chain in the spin-incoherent Luttinger liquid (LL) regime: J( 4r(2)/U) k(B)T E-F, where t is the hopping amplitude, U( t) is the repulsive on-site Coulomb interaction, and k(B)T (E-F similar to t) is the thermal (Fermi) energy. We introduce a fractional Landau LL approach, whose U = infinity fixed point is exactly mapped onto an ideal gas with two species obeying the Haldane-Wu exclusion fractional statistics. This phenomenological approach sheds light on the behavior of several thermodynamic properties in the spin-incoherent LL regime: specific heat, charge compressibility, magnetic susceptibility, and Drude weight. In fact, besides the hopping (mass) renormalization, the fractional Landau LL parameters, due to quasiparticle interaction, are determined and relationships with velocities of holons and spinons are unveiled. The specific heat thus obtained is in very good agreement with previous density matrix renormalization group (DMRG) simulations of the t-J model in the spin-incoherent regime. A phase diagram is provided and two thermodynamic paths to access this regime clarifies both the numerical and analytical procedures. Further, we show that the high-T limit of the fractional Landau LL entropy and chemical potential exhibit the expected results of the t-J model, under the condition U k(B)T. Lastly, finite-temperature Lanczos simulations of the single-particle distribution function confirm the characteristics of the spin-incoherent regime and the high-T limit observed in previous DMRG studies.
机译:贝特Ansatz方法和玻色化程序被用于描述在旋转非相干Luttinger液体(LL)制度的强耦合哈伯德链的热力学:J-(4R(2)/ U)<< K(B)T<< E-F,其中,t是跳频振幅,U(大于;> t)是排斥现场库仑相互作用,以及k(B)T(E-F类似t)是热(费米)能量。我们引入一个小数兰道LL方法,其U =无穷大固定点准确映射到一个理想的气体与两个物种服从霍尔丹武排斥分数统计。比热,电荷可压缩性,磁化率,并德鲁德重量:此现象学方法对在旋转非相干LL制度几热力学性质的行为揭示的光。事实上,除了跳频(质量)重整化,分数兰道LL参数,由于准粒子相互作用,被确定并与完全子和spinons的速度关系亮相。由此得到的比热与在旋转非相干政权吨-J模型的先前密度矩阵重整化群(DMRG)模拟非常吻合。本发明提供一种相图和两个热力学路径访问此政权澄清两者的数值和分析程序。此外,我们表明,分数朗道LL熵和化学势表现出吨-J模式的预期结果的高-T限制,条件U&GT下;> K(B)吨。最后,单粒子分布函数确认的有限温度的Lanczos模拟自旋非相干制度,并在以前的研究中DMRG观察到的高-T限的特点。

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  • 来源
    《Physical review, B》 |2018年第8期|共15页
  • 作者单位

    Univ Fed Rural Pernambuco Unidade Acad Cabo de Santo Agostinho BR-54503900 Cabo De Santo Agostinho PE Brazil;

    Univ Fed Pernambuco Dept Fis Lab Fis Teor &

    Computac BR-50670901 Recife PE Brazil;

    Univ Fed Pernambuco Dept Fis Lab Fis Teor &

    Computac BR-50670901 Recife PE Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
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