We investigate quantum effects in geometric phases arising when a two-level system is interacting with a quantized electromagnetic field. When the system is adiabatically driven along a closed loop in the parameter space, signatures of the field quantization are observable in the geometric phase. We propose a feasible experiment to measure these effects in cavity QED and also analyse the semi-classical limit, recovering the usual Berry phase result
Basing on the analogue Landau levels for a neutral particle possessing an induced electric dipole mo...
We report on the recent results revealing the presence of the geometric phase in all the systems ch...
When continuous parameters in a QFT are varied adiabatically, quantum states typically undergo mixin...
We investigate quantum effects in geometric phases arising when a two-level system is interacting wi...
A feasible experiment was proposed to investigate quantum effects in geometric phases, arising when ...
We investigate quantum effects in geometric phases arising when a two-level system is interacting wi...
A feasible experiment was proposed to investigate quantum effects in geometric phases, arising when ...
Berry’s geometric phase naturally appears when a quantum system is driven by an external field whose...
We calculate the Berry phase of a spin-1/2 particle in a magnetic field considering the quantum natu...
We calculate the Berry phase of a spin-1/2 particle in a magnetic field considering the quantum natu...
In quantum information science, the phase of a wave function plays an important role in encoding inf...
In quantum information science, the phase of a wave function plays an important role in encoding inf...
We study the adiabatic evolution of a two-level model in the presence of an external classical elect...
We are accustomed to think the phase of single particle states does not matter. After all, the phase...
The state vector representing a quantum system acquires a phase factor following an adiabatic evolut...
Basing on the analogue Landau levels for a neutral particle possessing an induced electric dipole mo...
We report on the recent results revealing the presence of the geometric phase in all the systems ch...
When continuous parameters in a QFT are varied adiabatically, quantum states typically undergo mixin...
We investigate quantum effects in geometric phases arising when a two-level system is interacting wi...
A feasible experiment was proposed to investigate quantum effects in geometric phases, arising when ...
We investigate quantum effects in geometric phases arising when a two-level system is interacting wi...
A feasible experiment was proposed to investigate quantum effects in geometric phases, arising when ...
Berry’s geometric phase naturally appears when a quantum system is driven by an external field whose...
We calculate the Berry phase of a spin-1/2 particle in a magnetic field considering the quantum natu...
We calculate the Berry phase of a spin-1/2 particle in a magnetic field considering the quantum natu...
In quantum information science, the phase of a wave function plays an important role in encoding inf...
In quantum information science, the phase of a wave function plays an important role in encoding inf...
We study the adiabatic evolution of a two-level model in the presence of an external classical elect...
We are accustomed to think the phase of single particle states does not matter. After all, the phase...
The state vector representing a quantum system acquires a phase factor following an adiabatic evolut...
Basing on the analogue Landau levels for a neutral particle possessing an induced electric dipole mo...
We report on the recent results revealing the presence of the geometric phase in all the systems ch...
When continuous parameters in a QFT are varied adiabatically, quantum states typically undergo mixin...