activity
20192025
most citedSimulating a Catalyst induced Quantum Dynamical Phase Transition of a Heyrovsky reaction with different models for the environment

4 citations · 4 across the 2 of their papers we have counts for

collaborators

6 papers

physics.optics2025

Synthetic Reflectionless Mode Exceptional Degeneracies via Emergent Local Symmetries

William Tuxbury, Lucas Fernandez-Alcazar, Tsampikos Kottos

We propose a new kind of physically realizable exceptional point degeneracies (EPDs) corresponding to synthetic reflectionless modes (SRM). These are solutions of an auxiliary wave…

physics.atm-clus2022★ 4 cited

Simulating a Catalyst induced Quantum Dynamical Phase Transition of a Heyrovsky reaction with different models for the environment

Fabricio S. Lozano-Negro, Marcos A. Ferreyra-Ortega, Denise Bendersky +2

Through an appropriate election of the molecular orbital basis, we show analytically that the molecular dissociation occurring in a Heyrovsky reaction can be interpreted as a Quant…

cond-mat.mes-hall2020

Current-induced forces in single-resonance systems

Sebastián E. Deghi, Lucas J. Fernández-Alcázar, Horacio M. Pastawski +1

In recent years, there has been an increasing interest in nanoelectromechanical devices, current-driven quantum machines, and the mechanical effects of electric currents on nanosca…

physics.app-ph2020

Extreme Non-Reciprocal Near-Field Thermal Radiation via Floquet Photonics

Lucas J. Fernández-Alcázar, Huanan Li, Tsampikos Kottos

By utilizing Floquet driving protocols and interlacing them with a judicious reservoir emission engineering we achieve extreme non-reciprocal thermal radiation. We show that the la…

cond-mat.dis-nn2019

Optical Phase Transitions in Photonic Networks: A Spin System Formulation

Alba Ramos, Tsampikos Kottos, Boris Shapiro

We investigate the collective dynamics of nonlinearly interacting modes in multimode photonic settings with long-range couplings. To this end, we have established a connection with…

physics.optics2019

Adiabatic Thermal Radiation Pumps for Thermal Photonics

Huanan Li, Lucas J. Fernández-Alcázar, Fred Ellis +2

We control the direction and magnitude of thermal radiation, between two bodies at equal temperature (in thermal equilibrium), by invoking the concept of adiabatic pumping. Specifi…