Activation gap in the specific heat measurements for He bi-layers
arXiv:1005.1905 · doi:10.1103/PhysRevB.83.073102
Abstract
Recently, attention has been given to a system of He bi-layers where a quantum criticality similar to the one in heavy fermion compounds has been observed [Science 317, 1356 92007)] In our previous analysis [Phys. Rev. B 79, 045112 (2007)], based on the Kondo breakdown scenario, we addressed successfully most of the features observed in that experiment. Here, we consider the activation energy observed experimentally in the specific heat measurements at low temperatures in the heavy Fermi liquid phase. Within our previous study of this system, this is identified with the gap opening when the upper hybridized band is emptied due to a strong hybridization between the nearly localized first layer and the fluid second one. We discuss the successes and limitations of our approach. An additional prediction is proposed.
6 pages, 6 figures - replaced with the published version
References in corpus (7)
- Fermi-liquid instabilities at magnetic quantum phase transitions
- Weak magnetism and non-Fermi liquids near heavy-fermion critical points
- Kondo Breakdown as a Selective Mott Transition in the Anderson Lattice
- Selective Mott transition and heavy fermions
- Multi-scale fluctuations near a Kondo Breakdown Quantum Critical Point
- Model of Quantum Criticality in He3 bilayers Adsorbed on graphite
- He3 bi-layers as a simple example of de-confinement