English

Strain Fields and Critical Phenomena in Manganites II: Spin-Lattice-Energy Hamiltonians

Statistical Mechanics 2023-03-29 v2

Abstract

The dynamic critical behavior at the paramagnetic-antiferromagnetic (PM-AFM) transition in manganites has recently been studied experimentally [Niermann et al., Phys. Rev. Lett. {\bf 114}, 037204 (2015)]. We extend the Hamiltonian of Paper I by incorporating an energy field, and study the corresponding Model C of critical dynamics. We use the dynamic renormalization group (RG) approach and calculate the dynamic critical exponents zz, νz\nu z and the line-width exponent Δ\Delta to leading order in the small expansion parameters ϵ=4d+2σ\epsilon=4-d+2\sigma and ϵ=4d\epsilon'=4-d. Here, dd is the space dimension and σ\sigma is the long-range exponent. Using σ\sigma as an adjustable parameter, the theory gives us a good match to the experimentally available static and dynamic critical exponents at the PM-AFM transition.

Keywords

Cite

@article{arxiv.2211.09387,
  title  = {Strain Fields and Critical Phenomena in Manganites II: Spin-Lattice-Energy Hamiltonians},
  author = {Rohit Singh and Sanjay Puri},
  journal= {arXiv preprint arXiv:2211.09387},
  year   = {2023}
}

Comments

"To appear in JSTAT: Theory and Experiment"