Abstract
We report how a setup consisting of three gratings yields quantitative two- and three-dimensional images depicting the quantum-mechanical phase shifts of neutron de Broglie wave packets induced by the influence of macroscopic objects. Since our approach requires only a little spatial and chromatic coherence it provides a more than 2 orders of magnitude higher efficiency than existing techniques. This dramatically reduces the required measurement time for computed phase tomography and opens up the way for three-dimensional investigations of previously inaccessible quantum-mechanical phase interactions of neutrons with matter. © 2006 The American Physical Society.
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CITATION STYLE
Pfeiffer, F., Grünzweig, C., Bunk, O., Frei, G., Lehmann, E., & David, C. (2006). Neutron phase imaging and tomography. Physical Review Letters, 96(21). https://doi.org/10.1103/PhysRevLett.96.215505
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