Multiorbital effects in the functional renormalization group: A weak-coupling study of the Emery model
arXiv:1310.3136 · doi:10.1103/PhysRevB.88.235112
Abstract
We perform an instability analysis of the Emery three-band model at hole doping and weak coupling within a channel-decomposed functional renormalization group flow proposed in Phys. Rev. B 79, 195125 (2009). In our approach, momentum dependences are taken into account with improved precision compared to previous studies of related models. Around a generic parameter set, we find a strong competition of antiferromagnetic and d-wave Cooper instabilities with a smooth behavior under a variation of doping and additional hopping parameters. For increasingly incommensurate ordering tendencies in the magnetic channel, the d-wave pairing gap is deformed at its maxima. Comparing our results for the Emery model to those obtained for the two-dimensional one-band Hubbard model with effective parameters, we find that, despite considerable qualitative agreement, multi-orbital effects have a significant impact on a quantitative level.
revised version: 22 pages, 11 figures
References in corpus (23)
- Magnetism, superconductivity, and pairing symmetry in Fe-based superconductors
- Unconventional Fermi surface instabilities in the Kagome Hubbard Model
- Electronic liquid crystal state in the high-temperature superconductor YBCO(6.45)
- Distinct Fermi-Momentum Dependent Energy Gaps in Deeply Underdoped Bi2212
- Two Energy Scales and two Quasiparticle Dynamics in the Superconducting State of Underdoped Cuprates
- Variational cluster approach to spontaneous symmetry breaking: The itinerant antiferromagnet in two dimensions
- Origin of Gap Anisotropy in Spin Fluctuation Models of the Fe-pnictides
- Theory of superconductivity in a three-orbital model of SrRuO
- A finite-frequency functional RG approach to the single impurity Anderson model
- Renormalized mean-field analysis of antiferromagnetism and d-wave superconductivity in the two-dimensional Hubbard model
- Nodes in the Gap Function of LaFePO, the Gap Function of the Fe(Se,Te) Systems, and the STM Signature of the s Pairing
- Self-energy flows in the two-dimensional repulsive Hubbard model
- Spatially Modulated Electronic Nematicity in the Three-Band Model of Cuprate Superconductors
- Antiferromagnetic Correlation and the Pairing Mechanism of the Cuprates and Iron Pnictides : a View From the Functional Renormalization Group Studies
- Combined density-functional and dynamical cluster quantum Monte Carlo calculations for three-band Hubbard models for hole-doped cuprate superconductors
- Correlation Strength, Gaps and Particle-Hole Asymmetry in High-Tc Cuprates: a Dynamical Mean Field Study of the Three-Band Copper-Oxide Model
- Incommensurate nematic fluctuations in the two-dimensional Hubbard model
- Superconductivity in the attractive Hubbard model: functional renormalization group analysis
- The superconducting gap in the Hubbard model and the two gap energy scales in high-Tc cuprates
- Role of oxygen-oxygen hopping in the three-band copper-oxide model: quasiparticle weight, metal insulator and magnetic phase boundaries, gap values and optical conductivity
- Parametrization of Nambu vertex in a singlet superconductor
- Renormalization group flow for fermions into antiferromagnetically ordered phases: Method and mean-field models
- Interplay between Point-Group Symmetries and the Choice of the Bloch Basis in Multiband Models
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