activity
20112015
most citedStatistical physics of nonlinear wave interaction

24 citations · 51 across the 5 of their papers we have counts for

collaborators

6 papers

cond-mat.stat-mech2015★ 4 cited

Inference for interacting linear waves in ordered and random media

P. Tyagi, A. Pagnani, F. Antenucci +2

A statistical inference method is developed and tested for pairwise interacting systems whose degrees of freedom are continuous angular variables, such as planar spins in magnetic…

cond-mat.stat-mech2014★ 24 cited

Statistical physics of nonlinear wave interaction

Fabrizio Antenucci, Miguel Ibáñez Berganza, Luca Leuzzi

The thermodynamic properties of vector (O(2) and Complex Spherical) models with four-body interactions are analyzed. When defined in dense topologies, these are effective models fo…

physics.optics2014★ 19 cited

Statistical physical theory of mode-locking laser generation with a frequency comb

Fabrizio Antenucci, M. Ibáñez Berganza, Luca Leuzzi

A study of the Mode-locking lasing pulse formation in closed cavities is presented within a statistical mechanical framework where the onset of laser coincides with a thermodynamic…

cond-mat.supr-con2013★ 3 cited

Energy space entanglement spectrum of pairing models with s-wave and p-wave symmetry

Javier Rodríguez-Laguna, Miguel Ibáñez Berganza, Germán Sierra

Entanglement between blocks of energy-levels is analysed for systems exhibiting s-wave and p-wave superconductivity. We study the entanglement entropy and spectrum of a block of $\…

cond-mat.stat-mech2012★ 1 cited

Critical behavior of the XY model in complex topologies

Miguel Ibáñez Berganza, Luca Leuzzi

The critical behavior of the O(2) model on dilute Levy graphs built on a 2D square lattice is analyzed. Different qualitative cases are probed, varying the exponent rho governing t…

quant-ph2011

Qubism: self-similar visualization of many-body wavefunctions

Javier Rodriguez-Laguna, Piotr Migdał, Miguel Ibáñez Berganza +2

A visualization scheme for quantum many-body wavefunctions is described, which we have termed qubism. Its main property is its recursivity: increasing the number of qubits reflects…