The Berry phase, acquired by an anisotropic spin system with spin J ≥ 1 when it is adiabatically rotated in a closed circuit, is considered to be associated with a non-quantized Dirac monopole, and has a geometrical as well as a topological component owing to the Dirac string. Here, it is argued that the Berry phase of a spin state with J ≥ 1 can be associated with a quantized Dirac monopole when the corresponding spin is taken to be an entangled state of a composite system of 1/2 spins. Evidently, this avoids the contribution of the Dirac string, and the Berry phase is purely geometrical in nature
This paper contains an evaluation of the Berry phases associated with the following class of nonline...
According to Berry, quantum states of a hamiltonian which varies adiabatically through a circuit C i...
We have found a manifestation of spin-orbit Berry phase in the conductance of a mesoscopic loop wit...
The Berry phase of an anisotropic spin system that is adiabatically rotated along a closed circuit C...
We study the effects of an extra static magnetic field, coupling with one of the two entan...
We investigate the Berry phase of adiabatic quantum evolution in the atom-molecule conversion system...
A three-dimensional generalization of the sign-change ( π phase shift) rule for adiabatic cycles of ...
The influence of the geometric phase, in particular the Berry phase, on an entangled spin- 1 2 syste...
We calculate the Berry phase of a spin-1/2 particle in a magnetic field considering the quantum natu...
We study a long-range interacting spin-1/2 system in the mean-field perspective, and obtain an analy...
We have studied here the influence of the Berry phase generated due to a cyclic evolution of an enta...
We calculate the Berry phase of a spin-1/2 particle in a magnetic field considering the quantum natu...
Three-dimensional topological insulators are characterized by the presence of protected gapless spin...
A study is presented of Berry’s observation that when a quantum‐mechanical system is transported on ...
We are accustomed to think the phase of single particle states does not matter. After all, the phase...
This paper contains an evaluation of the Berry phases associated with the following class of nonline...
According to Berry, quantum states of a hamiltonian which varies adiabatically through a circuit C i...
We have found a manifestation of spin-orbit Berry phase in the conductance of a mesoscopic loop wit...
The Berry phase of an anisotropic spin system that is adiabatically rotated along a closed circuit C...
We study the effects of an extra static magnetic field, coupling with one of the two entan...
We investigate the Berry phase of adiabatic quantum evolution in the atom-molecule conversion system...
A three-dimensional generalization of the sign-change ( π phase shift) rule for adiabatic cycles of ...
The influence of the geometric phase, in particular the Berry phase, on an entangled spin- 1 2 syste...
We calculate the Berry phase of a spin-1/2 particle in a magnetic field considering the quantum natu...
We study a long-range interacting spin-1/2 system in the mean-field perspective, and obtain an analy...
We have studied here the influence of the Berry phase generated due to a cyclic evolution of an enta...
We calculate the Berry phase of a spin-1/2 particle in a magnetic field considering the quantum natu...
Three-dimensional topological insulators are characterized by the presence of protected gapless spin...
A study is presented of Berry’s observation that when a quantum‐mechanical system is transported on ...
We are accustomed to think the phase of single particle states does not matter. After all, the phase...
This paper contains an evaluation of the Berry phases associated with the following class of nonline...
According to Berry, quantum states of a hamiltonian which varies adiabatically through a circuit C i...
We have found a manifestation of spin-orbit Berry phase in the conductance of a mesoscopic loop wit...