Based on the quantum invariant theory, the quantum phases, including the total phase as well as its dynamical and geometric parts, of Pancharatnam type are derived for a general spin in a time-dependent magnetic field, without the constraint of adiabatic, cyclic or unitary condition. The geometric meaning of geometric phase is expounded.Physics, MultidisciplinarySCI(E)中国科学引文数据库(CSCD)5ARTICLE11801-8041
We demonstrate that the internal magnetic states of a single nitrogen-vacancy defect, within a rotat...
A new approach to the theory of the geometric phase in quantum mechanics, based entirely on kinemati...
A new approach to the theory of the geometric phase in quantum mechanics, based entirely on kinemati...
We examine both quantum and classical versions of the problem of spin evolution in a slowly varying ...
We study the dynamics of the gyrophase of a charged particle in a magnetic field which is uniform in...
Aimed at graduate physics and chemistry students, this is the first comprehensive monograph covering...
The geometric phase in quantum mechanics was originally elucidated in the context of the adiabatic t...
With the aid of the exact solution for a quantum spin-1/2 in a rotating magnetic field and by imposi...
Quantum phenomena related to geometric and topological phases are investigated. The first results pr...
The quantum geometric phase is a fascinating demonstration how geometry affects standard quantum mec...
Within the adiabatic theorem we must explicitly add to the instantaneous adiabatic vectors, parametr...
We define a new unitary operator in the Hilbert space of a quantum system which parallel transports ...
We study a kind of geometric phases for entangled quantum systems, and particularly a spin driven by...
We define a new unitary operator in the Hubert space of a quantum system which parallel transports t...
The geometric phase (GP) for bipartite systems in transverse external magnetic fields is investigate...
We demonstrate that the internal magnetic states of a single nitrogen-vacancy defect, within a rotat...
A new approach to the theory of the geometric phase in quantum mechanics, based entirely on kinemati...
A new approach to the theory of the geometric phase in quantum mechanics, based entirely on kinemati...
We examine both quantum and classical versions of the problem of spin evolution in a slowly varying ...
We study the dynamics of the gyrophase of a charged particle in a magnetic field which is uniform in...
Aimed at graduate physics and chemistry students, this is the first comprehensive monograph covering...
The geometric phase in quantum mechanics was originally elucidated in the context of the adiabatic t...
With the aid of the exact solution for a quantum spin-1/2 in a rotating magnetic field and by imposi...
Quantum phenomena related to geometric and topological phases are investigated. The first results pr...
The quantum geometric phase is a fascinating demonstration how geometry affects standard quantum mec...
Within the adiabatic theorem we must explicitly add to the instantaneous adiabatic vectors, parametr...
We define a new unitary operator in the Hilbert space of a quantum system which parallel transports ...
We study a kind of geometric phases for entangled quantum systems, and particularly a spin driven by...
We define a new unitary operator in the Hubert space of a quantum system which parallel transports t...
The geometric phase (GP) for bipartite systems in transverse external magnetic fields is investigate...
We demonstrate that the internal magnetic states of a single nitrogen-vacancy defect, within a rotat...
A new approach to the theory of the geometric phase in quantum mechanics, based entirely on kinemati...
A new approach to the theory of the geometric phase in quantum mechanics, based entirely on kinemati...