The Kubo formula calculates transport coefficients like the quantum Hall conductivity from microscopic correlation functions.
The retrieved literature confirms that the Kubo formula is a standard microscopic linear-response framework used to calculate transport coefficients, including quantum Hall and longitudinal conductivities.
The claim states that the Kubo formula calculates transport coefficients like quantum Hall conductivity from microscopic correlation functions. Multiple papers (e.g., [2] and [8]) explicitly demonstrate the use of the Kubo formula to compute conductivities (including quantum Hall conductivity) from microscopic models, supporting the claim directly.
Yu Xue, E. Prodan. Quantum criticality at the Chern-to-normal insulator transition. 2013. https://doi.org/10.1103/PhysRevB.87.115141
Paper [2] uses the non-commutative Kubo formula to calculate conductivity and transport tensors in strongly disordered Chern insulators.
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Yawar Mohammadi, S. Bahrami. Integer quantum Hall effect in Kekulé-patterned graphene. 2021. https://doi.org/10.1088/1674-1056/ac1b82
Paper [8] applies the Kubo formula to derive analytical expressions for the Hall and longitudinal conductivities in Kekulé-patterned graphene.
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