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Entanglement and collective flavor oscillations in a dense neutrino gas

机译:致密中性气体中的缠结和集体风味振荡

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We investigate the importance of going beyond the mean-field approximation in the dynamics of collective neutrino oscillations. To expand our understanding of the coherent neutrino oscillation problem, we apply concepts from many-body physics and quantum information theory. Specifically, we use measures of nontrivial correlations (otherwise known as “entanglement”) between the constituent neutrinos of the many-body system, such as the entanglement entropy and the Bloch vector of the reduced density matrix. The relevance of going beyond the mean field is demonstrated by comparisons between the evolution of the neutrino state in the many-body picture vs the mean-field limit, for different initial conditions.
机译:我们调查超出集体中微振荡动力学中的平均场近似的重要性。 为了扩大我们对相干中微子振荡问题的理解,我们将概念从许多身体物理和量子信息理论应用。 具体地,我们使用非血管中微子之间的非增强相关性的措施(否则称为“缠结”),例如减小密度矩阵的缠结熵和光滑载体。 通过在许多身体图像中的中微子状态的演化与平均初始条件下的初始条件下,使用中微子状态的演化与平均初始条件的比较来证明超越平均场的相关性。

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