Amelino-Camelia Giovanni, Lämmerzahl Claus, Mercati Flavio, Tino Guglielmo M
Dipartimento di Fisica, Università di Roma La Sapienza and Sezione Roma1 INFN, Piazzale Moro 2, 00185 Roma, Italy.
Phys Rev Lett. 2009 Oct 23;103(17):171302. doi: 10.1103/PhysRevLett.103.171302. Epub 2009 Oct 21.
We use the results of ultraprecise cold-atom-recoil experiments to constrain the form of the energy-momentum dispersion relation, a structure that is expected to be modified in several quantum-gravity approaches. Our strategy of analysis applies to the nonrelativistic (small speeds) limit of the dispersion relation, and is therefore complementary to an analogous ongoing effort of investigation of the dispersion relation in the ultrarelativistic regime using observations in astrophysics. For the leading correction in the nonrelativistic limit the exceptional sensitivity of cold-atom-recoil experiments remarkably allows us to set a limit within a single order of magnitude of the desired Planck-scale level, thereby providing the first example of Planck-scale sensitivity in the study of the dispersion relation in controlled laboratory experiments.
我们利用超精确冷原子反冲实验的结果来限制能量 - 动量色散关系的形式,这种结构预计在几种量子引力方法中会被修改。我们的分析策略适用于色散关系的非相对论(低速)极限,因此与正在进行的利用天体物理学观测研究超相对论区域色散关系的类似工作互为补充。对于非相对论极限中的主导修正,冷原子反冲实验的极高灵敏度使我们能够在所需普朗克尺度水平的单个数量级内设定一个极限,从而在受控实验室实验中对色散关系的研究提供了普朗克尺度灵敏度的首个实例。