activity
20192021
most citedExergy of passive states: Waste energy after ergotropy extraction

11 citations · 18 across the 2 of their papers we have counts for

collaborators

5 papers

quant-ph202111 cited

Exergy of passive states: Waste energy after ergotropy extraction

F. H. Kamin, S. Salimi, Alan C. Santos

Work extraction protocol is always a significant issue in the context of quantum batteries, in which the notion of ergotropy is used to quantify a particular amount of energy that…

quant-ph20207 cited

The resource theory of coherence for quantum channels

F. H. Kamin, F. T. Tabesh, S. Salimi +1

We define the quantum-incoherent relative entropy of coherence ( REC) of quantum channels in the framework of the resource theory by using the Choi-Jamiolkowsky isomo…

quant-ph2020

Entanglement, coherence and charging process of quantum batteries

F. H. Kamin, F. T. Tabesh, S. Salimi +1

Quantum devices are systems that can explore quantum phenomena, like entanglement or coherence, for example, to provide some enhancement performance concerning their classical coun…

quant-ph2020

Environment-mediated charging process of quantum batteries

F. T. Tabesh, F. H. Kamin, S. Salimi

We study the charging process of open quantum batteries mediated by a common dissipative environment in two different scenarios. In the first case, we consider a quantum charger-ba…

quant-ph2019

Non-Markovian effects on charging and self-discharging processes of quantum batteries

F. H. Kamin, F. T. Tabesh, S. Salimi +2

The performance of quantum technologies that use entanglement and coherence as resource is highly limited by decohering effects due to their interaction with some environment. Part…