Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechanical theory has found it\u27s way into our everyday lives through advances in technology. In this dissertation a fundamental quantum mechanical demonstration and the technological development of a new quantum mechanical device are presented. Double-slit diffraction is a corner stone of quantum mechanics. It illustrates key features of quantum mechanics: interference and the particle-wave duality of matter. Here we demonstrate the full realization of Richard Feynman\u27s famous thought experiment. By placing a movable mask in front of a double-slit to control the transmission through the individuals slits. Probability distributions for single-...
We report the observation of fringes from a three grating electron interferometer. Interference frin...
Modern nanotechnology tools allowed us to prepare slits of 90 nm width and 450 nm spacing in a scree...
Interference patterns are generated when light from a point source passes through two parallel slits...
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...
Double-slit diffraction is a corner stone of quantum mechanics. It illustrates key features of quant...
The key features of quantum mechanics are vividly illustrated by the Young-Feynman two-slit thought ...
The diffraction of electrons by natural crystal structures was first observed in 1927. Before the st...
Interference experiments with electrons in a vacuum can illuminate both the quantum and the nanoscal...
Two nanosized slits are opened by focused ion beam milling in a membrane to observe, with a transmis...
none1noThe Young-Feynman two-hole interferometer is widely used to present the electron wave-particl...
Quantum-enhanced electron imaging promises highly efficient, low-damage transmission electron micros...
In 1949, at the end of a paper dedicated to the concept of the refractive index in electron optics, ...
The phenomena of atomic and molecular diffraction have been researched by many experiments, and thes...
We report the observation of fringes from a three grating electron interferometer. Interference frin...
Modern nanotechnology tools allowed us to prepare slits of 90 nm width and 450 nm spacing in a scree...
Interference patterns are generated when light from a point source passes through two parallel slits...
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...
Double-slit diffraction is a corner stone of quantum mechanics. It illustrates key features of quant...
The key features of quantum mechanics are vividly illustrated by the Young-Feynman two-slit thought ...
The diffraction of electrons by natural crystal structures was first observed in 1927. Before the st...
Interference experiments with electrons in a vacuum can illuminate both the quantum and the nanoscal...
Two nanosized slits are opened by focused ion beam milling in a membrane to observe, with a transmis...
none1noThe Young-Feynman two-hole interferometer is widely used to present the electron wave-particl...
Quantum-enhanced electron imaging promises highly efficient, low-damage transmission electron micros...
In 1949, at the end of a paper dedicated to the concept of the refractive index in electron optics, ...
The phenomena of atomic and molecular diffraction have been researched by many experiments, and thes...
We report the observation of fringes from a three grating electron interferometer. Interference frin...
Modern nanotechnology tools allowed us to prepare slits of 90 nm width and 450 nm spacing in a scree...
Interference patterns are generated when light from a point source passes through two parallel slits...