Even 100 years after its introduction by Louis de Broglie, the wave-nature of matter is often regarded as a mind-boggling phenomenon. To give an intuitive introduction to this field, we here discuss the diffraction of massive molecules through a single, a double, and a triple slit, as well as a nanomechanical grating. While the experiments are in good agreement with undergraduate textbook predictions, we also observe pronounced differences resulting from the molecules' mass and internal complexity. The molecules' polarizability causes an attractive van der Waals interaction with the slit walls, which can be modified by rotating the nanomechanical mask with respect to the molecular beam. The text is meant to introduce students and teachers t...
Aspects of vapor-phase electron diffraction are discussed, singling out the seminal contributions of...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
Double-slit diffraction is a corner stone of quantum mechanics. It illustrates key features of quant...
Since de Broglie???s work on the wave nature of particles, various optical phenomena have been obser...
The wave nature of matter is a key ingredient of quantum physics and yet it defies our classical int...
When Otto Stern embarked on molecular-beam experiments in his new lab at Hamburg University a centur...
A few years ago, diffraction of atoms by double slits and gratings was achieved for the first time, ...
We describe the state of the art in preparing, manipulating and detecting coherent molecular matter....
Abstract— Wave matter duality has now moved into the realm of settled science with slit experiments ...
The phenomena of atomic and molecular diffraction have been researched by many experiments, and thes...
Atomic diffraction through double slits and transmission gratings is well described in terms of the ...
Interference patterns are generated when light from a point source passes through two parallel slits...
Interference observed in a double-slit experiment most conclusively demonstrates the wave properties...
Molecular beams of He and D2 are scattered from a ruled diffraction grating in conical-mount geometr...
International audienceWe study the diffraction of neutral hydrogen atoms through suspended single-la...
Aspects of vapor-phase electron diffraction are discussed, singling out the seminal contributions of...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
Double-slit diffraction is a corner stone of quantum mechanics. It illustrates key features of quant...
Since de Broglie???s work on the wave nature of particles, various optical phenomena have been obser...
The wave nature of matter is a key ingredient of quantum physics and yet it defies our classical int...
When Otto Stern embarked on molecular-beam experiments in his new lab at Hamburg University a centur...
A few years ago, diffraction of atoms by double slits and gratings was achieved for the first time, ...
We describe the state of the art in preparing, manipulating and detecting coherent molecular matter....
Abstract— Wave matter duality has now moved into the realm of settled science with slit experiments ...
The phenomena of atomic and molecular diffraction have been researched by many experiments, and thes...
Atomic diffraction through double slits and transmission gratings is well described in terms of the ...
Interference patterns are generated when light from a point source passes through two parallel slits...
Interference observed in a double-slit experiment most conclusively demonstrates the wave properties...
Molecular beams of He and D2 are scattered from a ruled diffraction grating in conical-mount geometr...
International audienceWe study the diffraction of neutral hydrogen atoms through suspended single-la...
Aspects of vapor-phase electron diffraction are discussed, singling out the seminal contributions of...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
Double-slit diffraction is a corner stone of quantum mechanics. It illustrates key features of quant...