A propagation method for the scattering of a quantum wave packet from a potential surface is presented. It is used to model the quantum reflection of single atoms from a corrugated (metallic) surface. Our numerical procedure works well in two spatial dimensions requiring only reasonable amounts of memory and computing time. The effects of the surface corrugation on the reflectivity are investigated via simulations with a paradigm potential. These indicate that our approach should allow for future tests of realistic, effective potentials obtained from theory in a quantitative comparison to experimental data
In this paper we consider the effects of spontaneous emission on the problem of atomic reflection fr...
International audienceNumerical simulation may benefits from quantum computing (QC) potential to sol...
<p><strong>Figure 2.</strong> Snapshots of the outgoing wave packets at <em>t</em> = 3.4 μs. Coordin...
A propagation method for the scattering of a quantum wave packet from a potential surface is present...
In this paper, we examine whether a quantum computer can efficiently simulate quantum processes such...
We describe an experimentally realistic situation of the quantum reflection of helium atoms from an ...
We observed quantum reflection of ultracold atoms from the attractive potential of a solid surface. ...
6 pags., 5 figs., 1 tab.Quantum reflection of thermal He atoms from various surfaces (glass slide, G...
We present theoretical calculations for the reflection of atoms from a magnetic surface with a sinu...
Liouville transformations map in a rigorous manner one Schrödinger equation into another, with a cha...
The problem of wave transmission across an interface between a quantum liquid and a solid is conside...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2007.Includes bibliographi...
We report coherent reflection of thermal He atom beams from various microscopically rough surfaces a...
We develop the scattering approach for the dispersive force on a ground state atom on top of a corru...
Geometrically decorated two-dimensional (2D) discrete surfaces can be more effective than convention...
In this paper we consider the effects of spontaneous emission on the problem of atomic reflection fr...
International audienceNumerical simulation may benefits from quantum computing (QC) potential to sol...
<p><strong>Figure 2.</strong> Snapshots of the outgoing wave packets at <em>t</em> = 3.4 μs. Coordin...
A propagation method for the scattering of a quantum wave packet from a potential surface is present...
In this paper, we examine whether a quantum computer can efficiently simulate quantum processes such...
We describe an experimentally realistic situation of the quantum reflection of helium atoms from an ...
We observed quantum reflection of ultracold atoms from the attractive potential of a solid surface. ...
6 pags., 5 figs., 1 tab.Quantum reflection of thermal He atoms from various surfaces (glass slide, G...
We present theoretical calculations for the reflection of atoms from a magnetic surface with a sinu...
Liouville transformations map in a rigorous manner one Schrödinger equation into another, with a cha...
The problem of wave transmission across an interface between a quantum liquid and a solid is conside...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2007.Includes bibliographi...
We report coherent reflection of thermal He atom beams from various microscopically rough surfaces a...
We develop the scattering approach for the dispersive force on a ground state atom on top of a corru...
Geometrically decorated two-dimensional (2D) discrete surfaces can be more effective than convention...
In this paper we consider the effects of spontaneous emission on the problem of atomic reflection fr...
International audienceNumerical simulation may benefits from quantum computing (QC) potential to sol...
<p><strong>Figure 2.</strong> Snapshots of the outgoing wave packets at <em>t</em> = 3.4 μs. Coordin...