The Hubbard chain at finite temperatures: ab initio calculations of Tomonaga-Luttinger liquid properties
arXiv:cond-mat/9711310 · doi:10.1016/S0550-3213(98)00256-9
Abstract
We present a novel treatment of finite temperature properties of the one-dimensional Hubbard model. Our approach is based on a Trotter-Suzuki mapping utilizing Shastry's classical model and a subsequent investigation of the quantum transfer matrix. We derive non-linear integral equations for three auxiliary functions which have a clear physical interpretation of elementary excitations of spin type and charge excitations in lower and upper Hubbard bands. This allows for a transparent analytical study of certain limiting cases as well as for precise numerical investigations. We present data for the specific heat, magnetic and charge susceptibilities for various particle densities and coupling strengths U. The structure exposed by these curves is discussed in terms of the elementary charge and spin excitations. Special emphasis is placed on the study of the low-temperature behavior within our ab initio approach confirming the scaling predictions by Tomonaga-Luttinger liquid theory. In addition we make contact with the ``dressed energy'' formalism established for the analysis of ground state properties.
33 pages including 24 Postscript figures
Cited by in corpus (55)
- T-systems and Y-systems in integrable systems
- The Hubbard model within the equations of motion approach
- Signatures of Spin and Charge Energy Scales in the Local Moment and Specific Heat of the Two-Dimensional Hubbard Model
- Spinons in Magnetic Chains of Arbitrary Spins at Finite Temperatures
- Integrability of quantum chains: theory and applications to the spin-1/2 chain
- Isosbestic Points: Theory and Applications
- Integrable models and quantum spin ladders: comparison between theory and experiment for the strong coupling ladder compounds
- The Half-Filled One-Dimensional Extended Hubbard Model: Phase diagram and Thermodynamics
- Functional Relations in Stokes Multipliers and Solvable Models related to U_q(A^{(1)}_n)
- A Quantum Affine Algebra for the Deformed Hubbard Chain
- Universal probes for antiferromagnetic correlations and entropy in cold fermions on optical lattices
- Functional relations in Stokes multipliers - Fun with potential-
- Bond-order wave phase, spin solitons and thermodynamics of a frustrated linear spin-1/2 Heisenberg antiferromagnet
- Isosbestic points in the spectral function of correlated electrons
- Spectral densities and partition functions of modular quantum systems as derived from a central limit theorem
- Thermal Pure Quantum States of Many-Particle Systems
- Hubbard's Adventures in SYM-land? Some non-perturbative considerations on finite length operators
- Nearly universal crossing point of the specific heat curves of Hubbard models
- High Temperature Expansion for a Chain Model
- Anti-Symmetrically Fused Model and Non-Linear Integral Equations in the Three-State Uimin-Sutherland Model
- Commuting quantum transfer matrix approach to intrinsic Fermion system: Correlation length of a spinless Fermion model
- Finite-temperature properties of the Hubbard chain with bond-charge interaction
- Pseudoparticle approach to 1D integrable quantum models
- Competition of spin and charge excitations in the Hubbard model
- Nonlinear integral equations for thermodynamics of the sl(r+1) Uimin-Sutherland model
- Absence of ballistic charge transport in the half-filled 1D Hubbard model
- Separation of variables bases for integrable and Hubbard models
- Thermodynamics of antiferromagnetic alternating spin chains
- Magnetic susceptibility of alkali-TCNQ salts and extended Hubbard models with bond order and charge density wave phases
- Hubbard-Shastry lattice models
- Density-functional theory approach to the thermodynamics of the harmonically confined one-dimensional Hubbard model
- Tomonaga-Luttinger liquid in quasi-one-dimensional antiferromagnet BaCo2V2O8 in magnetic fields
- The Two-Band Luttinger Liquid with Spin-Orbit Coupling: Applications to Monatomic Chains on Surfaces
- Statistical mechanics of integrable quantum spin systems
- Exact thermodynamics of an Extended Hubbard Model of single and paired carriers in competition
- Fermionic R-Operator and Algebraic Structure of 1D Hubbard Model: Its application to quantum transfer matrix
- Correlation length of the 1D Hubbard Model at half-filling : equal-time one-particle Green's function
- Quantum critical behavior and thermodynamics of the repulsive one-dimensional Hubbard model in a magnetic field
- Characters for from a novel Thermodynamic Bethe Ansatz
- A Comment on the beta-expansion of s=1/2 and s=1 Ising Models
- A Hubbard model with integrable impurity
- Robustness of entropy plateaus: A case study of triangular Ising antiferromagnets
- Excited state TBA and functional relations in spinless Fermion model
- Thermodynamics of quantum spin chains with competing interactions
- Fractional exclusion statistics and thermodynamics of the Hubbard chain in the spin-incoherent Luttinger liquid regime
- Universal thermodynamics of the one-dimensional attractive Hubbard model
- Finite-Temperature Signatures of Spin Liquids in Frustrated Hubbard Model
- Density matrix renormalization group approach to the low temperature thermodynamics of correlated 1D fermionic models
- Frustrated Further-Neighbor Antiferromagnetic and Electron-Hopping Interactions in the d=3 tJ Model: Finite-Temperature Global Phase Diagrams from Renormalization-Group Theory
- The cumulant Green's functions method for the Hubbard model
- Crossover from Anderson- to Kondo-like behavior: Universality induced by spin-charge separation
- Finite size and finite temperature studies of the spin chain
- Universal temperature dependence of electron number in one-dimensional Hubbard model
- Exact thermodynamics and phase diagram of integrable t-J model with chiral interaction
- Canonical formulation for the thermodynamics of -invariant integrable spin chains