We analyze the coherence properties of polarized neutrons, after they have interacted with a magnetic field or a phase shifter undergoing different kinds of statistical fluctuations. We endeavor to probe the degree of disorder of the distribution of the phase shifts by means of the loss of quantum-mechanical coherence of the neutron. We find that the notion of entropy of the shifts and that of decoherence of the neutron do not necessarily agree. In some cases the neutron wave function is more coherent, even though it has interacted with a more disordered medium
Quantum mechanics is a part of physics where experiment and theory are inseparably intertwined. This...
Mesoscopic quantum phase coherence is important because it improves the prospects for handling quant...
The quantum interference of de Broglie matter waves is probably one of the most startling and fundam...
We analyse the coherence properties of neutron wavepackets, after they have interacted with a phase ...
Abstract The coherence properties of a neutron are analyzed by making use of the Wigner quasi-dist...
We analyze the coherence properties of a cold or a thermal neutron by utilizing the Wigner quasidist...
By means of a quantum optical description the connection between decoherence, dephasing and depolari...
We present a simplified and improved analysis of some recent experiments of neutron interferometry a...
The coherence properties of a neutron are analyzed by making use of the Wigner quasi-distribution fu...
Abstract We present a simplified and improved analysis of some recent experiments of neutron inter...
Recent experimental results of neutron interferometry at low transmission probability are analyzed w...
Interferometry with massive elementary particles combines particle and wave features in a direct way...
Quantum mechanical foundations of the polarized neutron phase shift experiment are discussed. The fa...
The propagation of the mutual coherence function is a well known method to describe the effects of n...
The slowing down equation for elastic scattering of neutrons in an infinite homogeneous medium is so...
Quantum mechanics is a part of physics where experiment and theory are inseparably intertwined. This...
Mesoscopic quantum phase coherence is important because it improves the prospects for handling quant...
The quantum interference of de Broglie matter waves is probably one of the most startling and fundam...
We analyse the coherence properties of neutron wavepackets, after they have interacted with a phase ...
Abstract The coherence properties of a neutron are analyzed by making use of the Wigner quasi-dist...
We analyze the coherence properties of a cold or a thermal neutron by utilizing the Wigner quasidist...
By means of a quantum optical description the connection between decoherence, dephasing and depolari...
We present a simplified and improved analysis of some recent experiments of neutron interferometry a...
The coherence properties of a neutron are analyzed by making use of the Wigner quasi-distribution fu...
Abstract We present a simplified and improved analysis of some recent experiments of neutron inter...
Recent experimental results of neutron interferometry at low transmission probability are analyzed w...
Interferometry with massive elementary particles combines particle and wave features in a direct way...
Quantum mechanical foundations of the polarized neutron phase shift experiment are discussed. The fa...
The propagation of the mutual coherence function is a well known method to describe the effects of n...
The slowing down equation for elastic scattering of neutrons in an infinite homogeneous medium is so...
Quantum mechanics is a part of physics where experiment and theory are inseparably intertwined. This...
Mesoscopic quantum phase coherence is important because it improves the prospects for handling quant...
The quantum interference of de Broglie matter waves is probably one of the most startling and fundam...