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Probing deformed commutators with macroscopic harmonic oscillators

机译:用宏观谐波振荡器探测变形换向器

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A minimal observable length is a common feature of theories that aim to merge quantum physics and gravity. Quantum mechanically, this concept is associated with a nonzero minimal uncertainty in position measurements, which is encoded in deformed commutation relations. In spite of increasing theoretical interest, the subject suffers from the complete lack of dedicated experiments and bounds to the deformation parameters have just been extrapolated from indirect measurements. As recently proposed, low-energy mechanical oscillators could allow to reveal the effect of a modified commutator. Here we analyze the free evolution of high-quality factor micro-and nano-oscillators, spanning a wide range of masses around the Planck mass m(P) (approximate to 22 mu g). The direct check against a model of deformed dynamics substantially lowers the previous limits on the parameters quantifying the commutator deformation.
机译:最小可观察长度是旨在合并量子物理学和重力的理论的共同特征。从机械角度讲,此概念与位置测量中的非零最小不确定性相关联,该不确定性以变形的换向关系编码。尽管理论上的兴趣不断增加,但该受试者仍然完全缺乏专门的实验,并且刚刚从间接测量中推断出变形参数的范围。如最近提出的,低能机械振荡器可以允许揭示改进型换向器的效果。在这里,我们分析了普朗克质量m(P)(约22μg)周围质量范围宽广的高质量因子微振荡器和纳米振荡器的自由演化。直接针对变形动力学模型进行检查,大大降低了先前对换向器变形进行量化的参数极限。

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