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The thermal Hall conductance $K$ of the fractional quantum Hall state at filling fraction $\nu=5/2$ has recently been measured to be $K=2.5 \pi^2k_B^2T/3h$ [M.
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https://arxiv.org/abs/2006.06018
J. Park, C. Spånslätt, Y. Gefen, and A. D. Mirlin, “Noise on the non-abelian ν = 5 / 2 \nu=5/2 fractional quantum hall edge,” 2020 · 2006
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A. Bid, N. Ofek, H. Inoue, M. Heiblum, C. L. Kane, V. Umansky, and D. Mahalu, “Observation of neutral modes in the fractional quantum hall regime,” Nature
2010
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E. H. Rezayi and S. H. Simon, “Breaking of particle-hole symmetry by landau level mixing in the ν = 5 / 2 \nu=5/2 quantized hall state,” Phys. Rev. Lett
2011
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N. Kumada, H. Kamata, and T. Fujisawa, “Edge magnetoplasmon transport in gated and ungated quantum hall systems,” Phys. Rev. B
2011
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X. Lin, C. Dillard, M. A. Kastner, L. N. Pfeiffer, and K. W. West, “Measurements of quasiparticle tunneling in the υ = 5 2 \upsilon=\frac{5}{2} fractional quantum hall state,” Phys. Rev. B
2012
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Y. Gross, M. Dolev, M. Heiblum, V. Umansky, and D. Mahalu, “Upstream neutral modes in the fractional quantum hall effect regime: Heat waves or coherent dipoles,” Phys. Rev. Lett
2012
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C. de C. Chamon and E. Fradkin, “Distinct universal conductances in tunneling to quantum hall states: The role of contacts,” Phys. Rev. B
2012
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G. Yang and D. E. Feldman, “Influence of device geometry on tunneling in the ν = 5 2 \nu=\frac{5}{2} quantum hall liquid,” Phys. Rev. B
2013
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M. Banerjee, M. Heiblum, V. Umansky, D. E. Feldman, Y. Oreg, and A. Stern, “Observation of half-integer thermal hall conductance,” Nature
2018
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C. Wang, A. Vishwanath, and B. I. Halperin, “Topological order from disorder and the quantized hall thermal metal: Possible applications to the ν = 5 / 2 \nu=5/2 state,” Phys. Rev. B
2018
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D. F. Mross, Y. Oreg, A. Stern, G. Margalit, and M. Heiblum, “Theory of disorder-induced half-integer thermal hall conductance,” Phys. Rev. Lett
2018
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B. Lian and J. Wang, “Theory of the disordered ν = 5 2 \nu=\frac{5}{2} quantum thermal hall state: Emergent symmetry and phase diagram,” Phys. Rev. B
2018
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S. H. Simon, “Interpretation of thermal conductance of the ν = 𝟓 / 𝟐 \mathbf{\nu}=\mathbf{5}/\mathbf{2} edge,” Phys. Rev. B
2018
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D. E. Feldman, “Comment on “interpretation of thermal conductance of the ν = 5 / 2 \nu=5/2 edge”,” Phys. Rev. B
2018
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C. Nosiglia, J. Park, B. Rosenow, and Y. Gefen, “Incoherent transport on the ν = 2 / 3 \nu=2/3 quantum hall edge,” Phys. Rev. B
2018
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K. K. W. Ma and D. E. Feldman, “Partial equilibration of integer and fractional edge channels in the thermal quantum hall effect,” Phys. Rev. B
2019
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S. H. Simon and B. Rosenow, “Partial equilibration of the anti-pfaffian edge due to majorana disorder,” 2019
2019
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C. Spånslätt, J. Park, Y. Gefen, and A. D. Mirlin, “Topological classification of shot noise on fractional quantum hall edges,” Phys. Rev. Lett
2019
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J. Park, A. D. Mirlin, B. Rosenow, and Y. Gefen, “Noise on complex quantum hall edges: Chiral anomaly and heat diffusion,” Phys. Rev. B
2019
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C. Spånslätt, J. Park, Y. Gefen, and A. D. Mirlin, “Conductance plateaus and shot noise in fractional quantum hall point contacts,” Phys. Rev. B
2020
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