We analyze the decoherence induced on a single qubit by the interaction with a two-level boson system with critical internal dynamics. We explore how the decoherence process is affected by the presence of quantum phase transitions in the environment. We conclude that the dynamics of the qubit changes dramatically when the environment passes through a continuous excited state quantum phase transition. If the system-environment coupling energy equals the energy at which the environment has a critical behavior, the decoherence induced on the qubit is maximal and the fidelity tends to zero with finite size scaling obeying a power-law
We study the quantum phase transition mechanisms that arise in the interacting boson model. We show ...
Abstract We consider quantum decoherence and Landauer’s principle in qubit-cavity quantum field theo...
We study the quantum phase transitions of a model that describes the interconversion of interacting ...
We analyze the decoherence induced on a single qubit by the interaction with a two-level boson syste...
We analyze the decoherence induced on a single qubit by the interaction with a two-level boson syst...
The decoherence induced on a single qubit by its interaction with the environment is studied. The en...
In this work we explore the relationship between an excited state quantum phase transition (ESQPT) a...
The decoherence induced on a single qubit by its interaction with the environment is studied. The en...
We study the similarities and differences between the phenomena of Quantum Decoherence and Quantum Q...
We study the similarities and differences between the phenomena of Quantum Decoherence and Quantum Q...
Decoherence induced by coupling a system with an environment may display universal features. Here we...
We study the decoherence properties of a two-level (qubit) system homogeneously coupled to an enviro...
Decoherence represents one of the most fundamental problems in quantum mechanics since its birth. In...
The dynamical evolution of a quantum register of arbitrary length coupled to an environment of arbit...
In this Thesis we study the quantum to classical transition process in the context of quantum mechan...
We study the quantum phase transition mechanisms that arise in the interacting boson model. We show ...
Abstract We consider quantum decoherence and Landauer’s principle in qubit-cavity quantum field theo...
We study the quantum phase transitions of a model that describes the interconversion of interacting ...
We analyze the decoherence induced on a single qubit by the interaction with a two-level boson syste...
We analyze the decoherence induced on a single qubit by the interaction with a two-level boson syst...
The decoherence induced on a single qubit by its interaction with the environment is studied. The en...
In this work we explore the relationship between an excited state quantum phase transition (ESQPT) a...
The decoherence induced on a single qubit by its interaction with the environment is studied. The en...
We study the similarities and differences between the phenomena of Quantum Decoherence and Quantum Q...
We study the similarities and differences between the phenomena of Quantum Decoherence and Quantum Q...
Decoherence induced by coupling a system with an environment may display universal features. Here we...
We study the decoherence properties of a two-level (qubit) system homogeneously coupled to an enviro...
Decoherence represents one of the most fundamental problems in quantum mechanics since its birth. In...
The dynamical evolution of a quantum register of arbitrary length coupled to an environment of arbit...
In this Thesis we study the quantum to classical transition process in the context of quantum mechan...
We study the quantum phase transition mechanisms that arise in the interacting boson model. We show ...
Abstract We consider quantum decoherence and Landauer’s principle in qubit-cavity quantum field theo...
We study the quantum phase transitions of a model that describes the interconversion of interacting ...