Thermodynamics, spin-charge separation and correlation functions of spin-1/2 fermions with repulsive interaction
arXiv:1104.2352 · doi:10.1103/PhysRevB.85.085414
Abstract
We investigate the low temperature thermodynamics and correlation functions of one-dimensional spin-1/2 fermions with strong repulsion in an external magnetic field via the thermodynamic Bethe ansatz method. The exact thermodynamics of the model in a weak magnetic field is derived with the help of Wiener-Hopf techniques. It turns out that the low energy physics can be described by spin-charge separated conformal field theories of an effective Tomonaga-Luttinger liquid and an antiferromagnetic SU(2) Heisenberg spin chain. However, these two types of conformally invariant low-lying excitations may break down as excitations take place far away from the Fermi points. The long distance asymptotics of the correlation functions and the critical exponents for the model in the presence of a magnetic field at zero temperature are derived in detail by solving dressed charge equations and by conformal mapping. Furthermore, we calculate the conformal dimensions for particular cases of correlation functions. The leading terms of these correlation functions are given explicitly for a weak magnetic field and for a magnetic field close to the critical field . Our analytical results provide insights into universal thermodynamics and criticality in one-dimensional many-body physics.
revised version, 47 pages, 4 figures, additional text
References in corpus (13)
- T-systems and Y-systems in integrable systems
- Phase Transitions and Pairing Signature in Strongly Attractive Fermi Atomic Gases
- Ferromagnetic behaviour in the strongly interacting two-component Bose gas
- Correlation functions of one-dimensional Bose-Fermi mixtures
- Magnetic Phase Transitions in One-dimensional Strongly Attractive Three-Component Ultracold Fermions
- Asymptotic correlation functions and FFLO signature for the one-dimensional attractive spin-1/2 Fermi gas
- Magnetic ordering and quantum statistical effects in strongly repulsive Fermi-Fermi and Bose-Fermi mixtures
- Quantum Criticality of 1D Attractive Fermi Gas
- Polylogs, thermodynamics and scaling functions of one-dimensional quantum many-body systems
- Paired state in an integrable spin-1 boson model
- Equilibrium thermodynamic properties of interacting two-component bosons in one dimension
- Unified description of pairing, trionic and quarteting states for one-dimensional SU(4) attractive fermions
- Efficient Thermodynamic Description of Multi-Component One-Dimensional Bose Gases
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