Based on a new type of two-level-system reservoir, we investigate the impact of dissipation on Berry's phase of a spin trapped in a periodical external field. It is found that the existence of environmental noise could lead to a decaying term in the matrix of Berry's phase as the sign of a decoherence process, which is in agreement with the result of Nazir et al. (Phys. Rev. A 65 (2002) 042303). Particularly, in comparison with a specialized case of the traditional Leggett dissipation model, we only shows the dependence of time but not temperature in decaying term. A concrete case is exhibited by using the one-dimensional Ohmic function
A phase damping reservoir composed by N-bosons coupled to a system of interest through a cross-Kerr ...
We examine the adiabatic dynamics of a quantum system coupled to a noisy classical control field. A ...
Due to its geometric nature Berry's geometric phase exhibits stability to a great extent when expos...
We investigate the decoherence effect of a bosonic bath on the Berry phase of a spin-$\frac{1}{2}$ ...
In this Thesis we study the quantum to classical transition process in the context of quantum mechan...
Advancements in the technology of quantum bits invoke more precise calculations for decoherence and ...
We study the effects of noise and decoherence for a double-potential well system, suitable for the f...
We present a quantum open-system approach to analyze the nonunitary dynamics of a superconducting qu...
Decoherence represents one of the most fundamental problems in quantum mechanics since its birth. In...
We study the adiabatic evolution of a two-level model in the presence of an external classical elect...
The decoherence induced on a single qubit by its interaction with the environment is studied. The en...
The effect of the environment on a quantum system is studied on an exactly solvable model: a harmoni...
We analyze the effects that general environments, namely ohmic and non-ohmic, at zero and high tempe...
We study the effects of noise and decoherence for a double-potential well system, suitable for the f...
In quantum information science, the phase of a wave function plays an important role in encoding inf...
A phase damping reservoir composed by N-bosons coupled to a system of interest through a cross-Kerr ...
We examine the adiabatic dynamics of a quantum system coupled to a noisy classical control field. A ...
Due to its geometric nature Berry's geometric phase exhibits stability to a great extent when expos...
We investigate the decoherence effect of a bosonic bath on the Berry phase of a spin-$\frac{1}{2}$ ...
In this Thesis we study the quantum to classical transition process in the context of quantum mechan...
Advancements in the technology of quantum bits invoke more precise calculations for decoherence and ...
We study the effects of noise and decoherence for a double-potential well system, suitable for the f...
We present a quantum open-system approach to analyze the nonunitary dynamics of a superconducting qu...
Decoherence represents one of the most fundamental problems in quantum mechanics since its birth. In...
We study the adiabatic evolution of a two-level model in the presence of an external classical elect...
The decoherence induced on a single qubit by its interaction with the environment is studied. The en...
The effect of the environment on a quantum system is studied on an exactly solvable model: a harmoni...
We analyze the effects that general environments, namely ohmic and non-ohmic, at zero and high tempe...
We study the effects of noise and decoherence for a double-potential well system, suitable for the f...
In quantum information science, the phase of a wave function plays an important role in encoding inf...
A phase damping reservoir composed by N-bosons coupled to a system of interest through a cross-Kerr ...
We examine the adiabatic dynamics of a quantum system coupled to a noisy classical control field. A ...
Due to its geometric nature Berry's geometric phase exhibits stability to a great extent when expos...