Ladderlike optical conductivity in the spin-fermion model
| Authors |
|
|---|---|
| Publication date | 15-03-2019 |
| Journal | Physical Review B |
| Article number | 115110 |
| Volume | Issue number | 99 | 11 |
| Number of pages | 12 |
| Organisations |
|
| Abstract |
In the nested limit of the spin-fermion model for the cuprates,one-dimensional physics in the form of half-filled two-leg laddersemerges. We show that the renormalization group flow of thecorresponding ladder is towards the d-Mott phase, a gapped spin-liquidwith short-ranged d-wave pairing correlations, and reveals anintermediate SO(5 ) × SO(3) symmetry. We use the results of therenormalization group in combination with a memory-function approach tocalculate the optical conductivity of the spin-fermion model in thehigh-frequency regime, where processes within the hot spot regiondominate the transport. We argue that umklapp processes play a majorrole. For finite temperatures, we determine the resistivity in thezero-frequency (dc) limit. Our results show an approximate lineartemperature dependence of the resistivity and a conductivity thatfollows a nonuniversal power law. A comparison to experimental datasupports our assumption that the conductivity is dominated by theantinodal contribution above the pseudogap.
|
| Document type | Article |
| Note | ©2019 American Physical Society |
| Language | English |
| Published at | https://doi.org/10.1103/PhysRevB.99.115110 |
| Other links | http://adsabs.harvard.edu/abs/2019PhRvB..99k5110C |
| Downloads |
PhysRevB.99.115110
(Final published version)
|
| Permalink to this page | |
