Molecular beams of He and D2 are scattered from a ruled diffraction grating in conical-mount geometry under grazing-incidence conditions. Fully resolved diffraction patterns as a function of detection angle are recorded for different grating azimuth angles and for two different kinetic energies of the particle beams. Variations in diffraction peak widths are traced back to different velocity spreads of He and D2 determined by time-of-flight measurements. A comprehensive analysis of diffraction intensities confirms universal diffraction, that is, for identical de Broglie wavelengths, the relative diffraction intensities for He and D2 are the same. Universal diffraction results from peculiarities of quantum reflection of the atoms a...
We have recently shown that diffraction of matter-wave from a square-wave grating of 400-µ...
Quantum reflection allows an atom or molecule to be reflected from a solid before it reaches the reg...
Diffraction of molecular beams of CH3F, CHF3, and metastable He* and Ne* from a 100-nm-period micro-...
Molecular beams of He and D2 are scattered from a ruled diffraction grating in conical-mount geometr...
Since de Broglie’s work on the wave nature of particles, various optical phenomena have been observe...
We report on the non-destructive scattering and diffraction of He, He2 and He3 from a plane ruled re...
When Otto Stern embarked on molecular-beam experiments in his new lab at Hamburg University a centur...
Atomic diffraction through double slits and transmission gratings is well described in terms of the ...
We report on reflection and diffraction of beams of He and D2 from square-wave gratings of 400-&...
We observe high-resolution diffraction patterns of a thermal-energy helium atom beam reflected from ...
We report on reflection and diffraction of beams of He and D2 from square-wave gratings of a 400-??m...
Handy mirrors and gratings for atoms and molecules would open new frontiers in matter-wave optics wi...
Diffraction of atomic and molecular beams is a powerful tool to unravel both surface structure and t...
Quantum reflection allows an atom or molecule to be reflected from a solid before it reaches the reg...
We observe high-resolution diffraction patterns of a thermal-energy helium atom beam reflected from ...
We have recently shown that diffraction of matter-wave from a square-wave grating of 400-µ...
Quantum reflection allows an atom or molecule to be reflected from a solid before it reaches the reg...
Diffraction of molecular beams of CH3F, CHF3, and metastable He* and Ne* from a 100-nm-period micro-...
Molecular beams of He and D2 are scattered from a ruled diffraction grating in conical-mount geometr...
Since de Broglie’s work on the wave nature of particles, various optical phenomena have been observe...
We report on the non-destructive scattering and diffraction of He, He2 and He3 from a plane ruled re...
When Otto Stern embarked on molecular-beam experiments in his new lab at Hamburg University a centur...
Atomic diffraction through double slits and transmission gratings is well described in terms of the ...
We report on reflection and diffraction of beams of He and D2 from square-wave gratings of 400-&...
We observe high-resolution diffraction patterns of a thermal-energy helium atom beam reflected from ...
We report on reflection and diffraction of beams of He and D2 from square-wave gratings of a 400-??m...
Handy mirrors and gratings for atoms and molecules would open new frontiers in matter-wave optics wi...
Diffraction of atomic and molecular beams is a powerful tool to unravel both surface structure and t...
Quantum reflection allows an atom or molecule to be reflected from a solid before it reaches the reg...
We observe high-resolution diffraction patterns of a thermal-energy helium atom beam reflected from ...
We have recently shown that diffraction of matter-wave from a square-wave grating of 400-µ...
Quantum reflection allows an atom or molecule to be reflected from a solid before it reaches the reg...
Diffraction of molecular beams of CH3F, CHF3, and metastable He* and Ne* from a 100-nm-period micro-...