most citedStatistical wave scattering through classically chaotic cavities in the presence of surface absorption

12 citations

7 papers

cond-mat.mes-hall200512 cited

Statistical wave scattering through classically chaotic cavities in the presence of surface absorption

M. Martinez-Mares, P. A. Mello

We propose a model to describe the statistical properties of wave scattering through a classically chaotic cavity in the presence of surface absorption. Experimentally, surface abs…

nucl-th2005

Entropy and Size in HIC

A. Barrañón, J. A. López, J. Escamilla Roa

Distinct entropy definitions have been used to obtain an inverse correlation between the residual size and entropy for Heavy Ion Collisions. This explains the existence of several…

nucl-th2005

A HIC Primitive Spinodal Decomposition Signature

Armando Barrañón, J. A. López

Evidence of a primitive spinodal decomposition has been obtained for central Ni+Ni Heavy Ion Collision, since higher order charge correlations show a peak when four fragments of si…

cond-mat.mes-hall20045 cited

Statistical fluctuations of the parametric derivative of the transmission and reflection coefficients in absorbing chaotic cavities

M. Martinez-Mares

Motivated by recent theoretical and experimental works, we study the statistical fluctuations of the parametric derivative of the transmission T and reflection R coefficients in ba…

cond-mat.mes-hall20046 cited

Effect of the spatial reflection symmetry on the distribution of the parametric conductance derivative in ballistic chaotic cavities

M. Martinez-Mares, E. Castano

We study the effect of left-right symmetry on the distribution of the parametric derivative of the dimensionless conductance T with respect to an external parameter X, dT/dX, of ba…

nucl-th2004

Relaxation, Emission Modes and Limit Temperatures in Ni+Ni HIC

Armando Barrañón, J. A. López, C. Dorso

A dynamical stability analysis is performed for Ni+Ni central collision at intermediate energies, showing that in chemical, thermal and dynamical equilibriums are reached at an ear…