Abstract
Using a “monochromatic” (single-axial-velocity) and slow (250 m/s) beam of metastable helium atoms, we realize up to eighth-order Bragg scattering and obtain a splitting angle of 6 mrad at low laser power (3 mW). This corresponds to a truly macroscopic separation of 12 mm on the detector. For fifth-order scattering, we have observed several oscillations of the splitting ratio when varying the laser power (“Pendellösung oscillations”). The large splitting angle, the adjustable splitting ratio, and the cleanness of the split beams, with [Formula Presented] rms width each, make the beam splitter ideal for a large-enclosed-area atom interferometer. © 2002 The American Physical Society.
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CITATION STYLE
Koolen, A. E. A., Jansen, G. T., Domen, K. F. E. M., Beijerinck, H. C. W., & van Leeuwen, K. A. H. (2002). Large-angle adjustable coherent atomic beam splitter by Bragg scattering. Physical Review A - Atomic, Molecular, and Optical Physics, 65(4), 4. https://doi.org/10.1103/PhysRevA.65.041601
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