Mesoscopic charging effects in the σ-model for granular metals
A. V. Andreev, I. S. Beloborodov
Abstract
We derive the σ-model for granular metals. It is valid for any relation between the temperature, T, and the grain mean level spacing. The continuum limit of the σ-model describes non-perturbative charging effects in homogeneous disordered metals. The σ-model action contains a novel term which is crucial for studying Coulomb blockade effects. Topological properties of the σ-model encoding charge discreteness are studied. For T below the escape rate from the grain, Γ, Coulomb blockade effects are described by solitons of the Q-matrix which are delocalized in real space. At T> Γ the solitons transform into phase instantons localized at a single tunneling contact.
Create a lesson
Related papers
Coherent and ultra-low-power EDSR with a flopping-mode spin qubit in germanium
Alexei Orekhov, Wonjin Jang, Pan Zhang et al.
Disorder-induced modulation of the nonlinear Hall effect in Weyl semimetals
Juan A. Cañas, Daniel A. Bonilla, A. Martín-Ruiz
Coplanar Lateral Gating MoS2 on SrTiO3: A Unified Platform for Classical and Quantum Devices
Prasad Muragesh, Manav Murali, Venkatesha Modur Ramachandra et al.
Predictive Structure to Thermal Conductivity Modeling Framework for BEOL Interconnect Stacks in Advanced Technology Nodes Enabled by Extensive Layer Resolved Thermal Measurements
Zifeng Huang, Yiyang Sun, Tianyu Jia et al.
Plasmons in twisted bilayer graphene across dispersive and flat bands
Antonio Palamara, Michele Pisarra, Antonello Sindona
Highly uniform first-electron position in qubit arrays fabricated on dedicated QSOI(R) 300mm commercial platform
Johan Pelloux-Prayer, Elise Prin, Giselle A. Elbaz et al.