Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams into line patterns on a substrate. Laser cooled atom beams are commonly used, but an atom beam source with a small opening placed at a large distance from a substrate creates atom beams which are locally geometrically collimated on the substrate. These beams have local offset angles with respect to the substrate. We show that this affects the height, width, shape, and position of the created structures. We find that simulated effects are partially obscured in experiments by substrate-dependent diffusion of atoms, while scattering and interference just above the substrate limit the quality of the standing wave lens. We find that in atom lithograp...
State-of-the-art: Until 1995 the generation of stable, periodic structures made of Chromium and Alum...
Atom lithography [1] has attracted a great interest in the scientific community as a technique for t...
Abstract—We present an overview of our progress towards using optical fields as ‘light masks ’ for m...
Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams int...
Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams int...
Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams int...
Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams int...
Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams int...
Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams int...
Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams int...
Atom lithography is a technique to structure layers of atoms during deposition, using interactions o...
We review the two kinds of forces that near-resonant light exerts on atoms the spontaneous force tha...
We review the two kinds of forces that near-resonant light exerts on atoms the spontaneous force tha...
Slow neutral beams of metal atoms can be manipulated using the intensity gradient of near-resonant l...
Atom lithography [1] has attracted a great interest in the scientific community as a technique for t...
State-of-the-art: Until 1995 the generation of stable, periodic structures made of Chromium and Alum...
Atom lithography [1] has attracted a great interest in the scientific community as a technique for t...
Abstract—We present an overview of our progress towards using optical fields as ‘light masks ’ for m...
Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams int...
Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams int...
Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams int...
Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams int...
Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams int...
Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams int...
Atom lithography uses standing wave light fields as arrays of lenses to focus neutral atom beams int...
Atom lithography is a technique to structure layers of atoms during deposition, using interactions o...
We review the two kinds of forces that near-resonant light exerts on atoms the spontaneous force tha...
We review the two kinds of forces that near-resonant light exerts on atoms the spontaneous force tha...
Slow neutral beams of metal atoms can be manipulated using the intensity gradient of near-resonant l...
Atom lithography [1] has attracted a great interest in the scientific community as a technique for t...
State-of-the-art: Until 1995 the generation of stable, periodic structures made of Chromium and Alum...
Atom lithography [1] has attracted a great interest in the scientific community as a technique for t...
Abstract—We present an overview of our progress towards using optical fields as ‘light masks ’ for m...