Current nanotechnology techniques make possible the preparation of slits in the submicrometer range so that electron interference and diffraction experiments can be done even with a conventional electron microscope. If the instrument is also equipped with a field emission source, it is possible to follow almost in real time the transition from the image of the slits to their Fraunhofer pattern through the intermediate Fresnel diffraction images. We discuss our results for the two-slit experiment and illustrate them for the three-slit case
A conventional transmission electron microscope, equipped with a fast recording system able to measu...
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...
Current nanotechnology techniques make possible the preparation of slits in the submicrometer range ...
The recent advances in nanotechnology and electron microscopy are making today possible the realizat...
The recent advances in nanotechnology and electron microscopy are making today possible the realizat...
By means of a focused ion beam apparatus slits about 90 nm in width, 1500 nm in length and with a pi...
Modern nanotechnology tools allowed us to prepare slits of 90 nm width and 450 nm spacing in a scree...
In this short Note we report a method for producing samples containing two nano-sized slits suitable...
The key features of quantum mechanics are vividly illustrated by the Young-Feynman two-slit thought ...
This resource illustrates the interference patterns for diffraction through double slits. A series o...
Two nanosized slits are opened by focused ion beam milling in a membrane to observe, with a transmis...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
A conventional transmission electron microscope, equipped with a fast recording system able to measu...
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...
Current nanotechnology techniques make possible the preparation of slits in the submicrometer range ...
The recent advances in nanotechnology and electron microscopy are making today possible the realizat...
The recent advances in nanotechnology and electron microscopy are making today possible the realizat...
By means of a focused ion beam apparatus slits about 90 nm in width, 1500 nm in length and with a pi...
Modern nanotechnology tools allowed us to prepare slits of 90 nm width and 450 nm spacing in a scree...
In this short Note we report a method for producing samples containing two nano-sized slits suitable...
The key features of quantum mechanics are vividly illustrated by the Young-Feynman two-slit thought ...
This resource illustrates the interference patterns for diffraction through double slits. A series o...
Two nanosized slits are opened by focused ion beam milling in a membrane to observe, with a transmis...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
A conventional transmission electron microscope, equipped with a fast recording system able to measu...
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...