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Quantum reflection of antihydrogen in the GBAR experiment

机译:GBAR实验中抗氢的量子反射

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In the GBAR experiment, cold antihydrogen atoms will be left to fall on an annihilation plate with the aim of measuring the gravitational acceleration of antimatter. Here, we study the quantum reflection of these antiatoms due to the Casimir-Polder potential above the plate. We give realistic estimates of the potential and quantum reflection amplitudes, taking into account the specificities of antihydrogen and the optical properties of the plate. We find that quantum reflection is enhanced for weaker potentials, for example above thin slabs, graphene and nanoporous media.
机译:在GBAR实验中,冷的反氢原子将留在fall灭板上,以测量反物质的重力加速度。在这里,我们研究了由于板上方的卡西米尔-波尔德电位而导致的这些反原子的量子反射。考虑到抗氢的特异性和板的光学性质,我们给出了势能和量子反射幅度的现实估计。我们发现,对于较弱的电势,例如在薄平板,石墨烯和纳米多孔介质上方,量子反射得到增强。

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