The validity of quantum-mechanical predictions has been confirmed with a high degree of accuracy in a wide range of experiments. Although the statistics of the outcomes of a measuring apparatus have been studied intensively, little has been explored and is known regarding the accessibility of quantum dynamics. For these sorts of fundamental studies of quantum mechanics, interferometry using neutron matter-waves in particular, provides almost ideal experimental circumstances. In this device quantum interference between spatially separated beams occurs on a macroscopic scale. Recently, the full determination of weak-values of neutrons 1 2 ...
Neutron interferometry has proved to be a very precise technique for measuring the quantum mechanica...
We discuss a discrete-event simulation approach, which has been shown to give a unified cause-and-ef...
In neutron interference experiments nowadays both particle and wave aspects of quantum particles are...
From its very beginning, quantum theory has been revealing extraordinary and counter-intuitive pheno...
Interferometry with massive elementary particles combines particle and wave features in a direct way...
The quantum interference of de Broglie matter waves is probably one of the most startling and fundam...
Quantum mechanics is a part of physics where experiment and theory are inseparably intertwined. This...
One of the common conceptions of nature, typically derived from the experiences with classical syste...
The quantum Cheshire cat is an effect demonstrated within the framework of weak measurement aided wi...
It is shown that discrete-event simulation accurately reproduces the experimental data of a single-n...
Ongoing fascination with quantum mechanics keeps driving the development of the wide field of quantu...
A method was recently proposed and experimentally realized for characterizing a quantum state by dir...
Arbeit an der Bibliothek noch nicht eingelangt - Daten nicht geprueftAbweichender Titel nach Überset...
The development of qualitatively new measurement capabilities is often a prerequisite for critical s...
AbstractThe field of neutron interferometry achieved one of its most significant successes with the ...
Neutron interferometry has proved to be a very precise technique for measuring the quantum mechanica...
We discuss a discrete-event simulation approach, which has been shown to give a unified cause-and-ef...
In neutron interference experiments nowadays both particle and wave aspects of quantum particles are...
From its very beginning, quantum theory has been revealing extraordinary and counter-intuitive pheno...
Interferometry with massive elementary particles combines particle and wave features in a direct way...
The quantum interference of de Broglie matter waves is probably one of the most startling and fundam...
Quantum mechanics is a part of physics where experiment and theory are inseparably intertwined. This...
One of the common conceptions of nature, typically derived from the experiences with classical syste...
The quantum Cheshire cat is an effect demonstrated within the framework of weak measurement aided wi...
It is shown that discrete-event simulation accurately reproduces the experimental data of a single-n...
Ongoing fascination with quantum mechanics keeps driving the development of the wide field of quantu...
A method was recently proposed and experimentally realized for characterizing a quantum state by dir...
Arbeit an der Bibliothek noch nicht eingelangt - Daten nicht geprueftAbweichender Titel nach Überset...
The development of qualitatively new measurement capabilities is often a prerequisite for critical s...
AbstractThe field of neutron interferometry achieved one of its most significant successes with the ...
Neutron interferometry has proved to be a very precise technique for measuring the quantum mechanica...
We discuss a discrete-event simulation approach, which has been shown to give a unified cause-and-ef...
In neutron interference experiments nowadays both particle and wave aspects of quantum particles are...