arXiv · cond-mat/0311419
Two Types of the Effective Mass Divergence and the Grüneisen Ratio in Heavy Fermion Metals
Abstract
The behavior of the specific heat $c_p$, effective mass $M^*$, and the thermal expansion coefficient $α$ of a Fermi system located near the fermion condensation quantum phase transition (FCQPT) is considered. We observe the first type behavior if the system is close to FCQPT: the specific heat $c_p\propto \sqrt{T}$, $M^*\propto1/\sqrt{T}$, while the thermal expansion coefficient $α\propto \sqrt{T}$. Thus, the Grüneisen ratio ${\rm Γ}(T)=α/c_p$ does not diverges. At the transition region, where the system passes over from the non-Fermi liquid to the Landau Fermi liquid, the ratio diverges as ${\rm Γ}(T)\propto 1/\sqrt{T}$. When the system becomes the Landau Fermi liquid, ${\rm Γ}(T,r)\propto 1/r$, with $r$ being a distance from the quantum critical point. Provided the system has undergone FCQPT, the second type takes place: the specific heat behaves as $c_p\propto \sqrt{T}$, $M^*\propto 1/T$, and $α=a+bT$ with $a,b$ being constants. Again, the Grüneisen ratio diverges as ${\rm Γ}(T)\propto 1/\sqrt{T}$.
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M. Ya. Amusia, A. Z. Msezane, V. R. Shaginyan. 2003-11-18. Two Types of the Effective Mass Divergence and the Grüneisen Ratio in Heavy Fermion Metals. https://doi.org/10.1016/j.physleta.2003.11.040
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