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首页> 外文期刊>Modern Physics Letters, A >Trace of phase-space noncommutativity in response of a free particle to linearized gravitational waves
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Trace of phase-space noncommutativity in response of a free particle to linearized gravitational waves

机译:自由粒子对线性化重力波的响应相空间非交换性的迹线

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Interaction of linearized gravitational waves with a otherwise free particle has been studied quantum mechanically in a noncommutative (NC) phase-space to examine whether the particle's response to the gravitational wave gets modified due to spatial and/or momentum noncommutativity. The result shows that momentum noncommutativity introduces a oscillatory noise with a specific frequency determined by the fundamental momentum scale and particle mass. Because of the global nature of the phase-space noncommutativity such noise will have similar characteristics for all detector sites and thus will stand out in a data cross-correlation procedure. If detected, this noise will provide evidence of momentum noncommutativity and also an estimation of the relevant noncommutative parameter.
机译:线性引力波与其他自由粒子的相互作用已在非交换(NC)相空间中进行了量子力学研究,以检查粒子对重力波的响应是否由于空间和/或动量非交换性而发生了变化。结果表明,动量非交换性引入了具有特定频率的振荡噪声,该特定频率由基本动量尺度和粒子质量决定。由于相空间非交换性的全局性质,这种噪声对于所有检测器位置都将具有相似的特性,因此在数据互相关过程中会脱颖而出。如果检测到,则该噪声将提供动量非交换性的证据以及相关非交换性参数的估计。

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