The key features of quantum mechanics are vividly illustrated by the Young-Feynman two-slit thought experiment, whose second part discusses the recording of an electron distribution with one of the two slits partially or totally closed by an aperture. Here, we realize the original Feynman proposal in a modern electron microscope equipped with a high brightness gun and two biprisms, with one of the biprisms used as a mask. By exciting the microscope lenses to conjugate the biprism plane with the slit plane, observations are carried out in the Fraunhofer plane with nearly ideal control of the covering of one of the slits. A second, new experiment is also presented, in which interference phenomena due to partial overlap of the slits are observ...
Interference patterns are generated when light from a point source passes through two parallel slits...
Young’s double slit experiments express the mystery of quantum mechanics. To explore the mystery, va...
An experiment is described which is an analog of Young\u27s double-slit interferometer using an atom...
The key features of quantum mechanics are vividly illustrated by the Young-Feynman two-slit thought ...
Double-slit diffraction is a corner stone of quantum mechanics. It illustrates key features of quant...
Interference experiments with electrons in a vacuum can illuminate both the quantum and the nanoscal...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
Modern nanotechnology tools allowed us to prepare slits of 90 nm width and 450 nm spacing in a scree...
The Young-Feynman two-hole interferometer is widely used to present the electron wave-particle duali...
Two nanosized slits are opened by focused ion beam milling in a membrane to observe, with a transmis...
The currently accepted model for quantum interference resulting from the emission of electron waves ...
In this short Note we report a method for producing samples containing two nano-sized slits suitable...
Interference patterns are generated when light from a point source passes through two parallel slits...
Young’s double slit experiments express the mystery of quantum mechanics. To explore the mystery, va...
An experiment is described which is an analog of Young\u27s double-slit interferometer using an atom...
The key features of quantum mechanics are vividly illustrated by the Young-Feynman two-slit thought ...
Double-slit diffraction is a corner stone of quantum mechanics. It illustrates key features of quant...
Interference experiments with electrons in a vacuum can illuminate both the quantum and the nanoscal...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
Modern nanotechnology tools allowed us to prepare slits of 90 nm width and 450 nm spacing in a scree...
The Young-Feynman two-hole interferometer is widely used to present the electron wave-particle duali...
Two nanosized slits are opened by focused ion beam milling in a membrane to observe, with a transmis...
The currently accepted model for quantum interference resulting from the emission of electron waves ...
In this short Note we report a method for producing samples containing two nano-sized slits suitable...
Interference patterns are generated when light from a point source passes through two parallel slits...
Young’s double slit experiments express the mystery of quantum mechanics. To explore the mystery, va...
An experiment is described which is an analog of Young\u27s double-slit interferometer using an atom...