We discuss recent advances towards matter-wave interference experiments with free beams of metallic and dielectric nanoparticles. They require a brilliant source, an efficient detection scheme and a coherent method to divide the de Broglie waves associated with these clusters: We describe an approach based on a magnetron sputtering source which ejects an intense cluster beam with a wide mass dispersion but a small velocity spread of 10%. The source is universal as it can be used with all conducting and many semiconducting or even insulating materials. Here we focus on metals and dielectrics with a low work function of the bulk and thus a low cluster ionization energy. This allows us to realize photoionization gratings as coherent matter-wav...
New prospects for de Broglie interferometry Grating diffraction in the far-field and Poisson’s spot ...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
Atoms can be trapped and guided with electromagnetic fields, using nanofabricated structures. We des...
We discuss the coherent splitting and recombining of a nanoparticle in a mesoscopic "closed-loop" St...
The design of achromatic optical components requires materials with high transparency and low disper...
The design of achromatic optical components requires materials with high transparency and low disper...
The design of achromatic optical components requires materials with high transparency and low disper...
The design of achromatic optical components requires materials with high transparency and low disper...
This Research Highlight showcases the Research Paper entitled, Collective-Mode Enhanced Matter-Wave ...
Die Quantenmechanik ist eine der meistgeprüften Theorien in der Physik, jedoch sind die auf der mikr...
Interference of matter waves is at the heart of quantum physics and has been observed for a wide ran...
The phenomenon of matter-wave interference lies at the heart of quantum physics. It has been observe...
Abstract We consider various effects that are encountered in matter wave interfer-ence experiments w...
Quantum mechanical wave interference of massive molecules at an atomically thin grating sheds new li...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
New prospects for de Broglie interferometry Grating diffraction in the far-field and Poisson’s spot ...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
Atoms can be trapped and guided with electromagnetic fields, using nanofabricated structures. We des...
We discuss the coherent splitting and recombining of a nanoparticle in a mesoscopic "closed-loop" St...
The design of achromatic optical components requires materials with high transparency and low disper...
The design of achromatic optical components requires materials with high transparency and low disper...
The design of achromatic optical components requires materials with high transparency and low disper...
The design of achromatic optical components requires materials with high transparency and low disper...
This Research Highlight showcases the Research Paper entitled, Collective-Mode Enhanced Matter-Wave ...
Die Quantenmechanik ist eine der meistgeprüften Theorien in der Physik, jedoch sind die auf der mikr...
Interference of matter waves is at the heart of quantum physics and has been observed for a wide ran...
The phenomenon of matter-wave interference lies at the heart of quantum physics. It has been observe...
Abstract We consider various effects that are encountered in matter wave interfer-ence experiments w...
Quantum mechanical wave interference of massive molecules at an atomically thin grating sheds new li...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
New prospects for de Broglie interferometry Grating diffraction in the far-field and Poisson’s spot ...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
Atoms can be trapped and guided with electromagnetic fields, using nanofabricated structures. We des...