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We propose a particle-hole symmetric theory of the Fermi-liquid ground state of a half-filled Landau level.
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S. H. Simon and B. I. Halperin, “Finite-wave-vector electromagnetic response of fractional quantum Hall states,” Phys. Rev. B 48
1993
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V. J. Goldman, B. Su, and J. K. Jain, “Detection of Composite Fermions by Magnetic Focusing,” Phys. Rev. Lett. 72
1994
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N. Read, “Theory of the half-filled Landau level,” Semicond. Sci. Technol. 9
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S. S. Lee, S. Ryu, C. Nayak, and M. P. A. Fisher, “Particle-Hole Symmetry and the ν = 5 2 \nu=\frac{5}{2} Quantum Hall State,” Phys. Rev. Lett 99
2007
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D. V. Khveshchenko, “Composite Dirac fermions in graphene,” Phys. Rev. B 75
2007
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2009
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2009
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1996
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K. A. Intriligator and N. Seiberg, “Mirror symmetry in three-dimensional gauge theories,” Phys. Lett. B 387
1996
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S. H. Simon, A. Stern, and B. I. Halperin, “Composite fermions with orbital magnetizations,” Phys. Rev. B 54
1996
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J. K. Jain, Composite Fermions (Cambridge University Press, Cambridge, England, 1997)
1997
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S. A. Kivelson, D.-H. Lee, Y. Krotov, and J. Gan, “Composite-fermion Hall conductance at ν = 1 2 \nu=\frac{1}{2} ,” Phys. Rev. B 55
1997
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D.-H. Lee, “Neutral Fermions at Filling Factor ν = 1 / 2 \nu=1/2 ,” Phys. Rev. Lett. 80
1998
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N. Read, “Lowest-Landau-level theory of the quantum Hall effect: The Fermi-liquid-like state of bosons at filling factor one,” Phys. Rev. B 58
1998
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2010
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C. Hoyos and D. T. Son, “Hall Viscosity and Electromagnetic Response,” Phys. Rev. Lett. 108
2012
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2012
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2013
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2013
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2013
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M. Mulligan and F. J. Burnell, “Topological insulators avoid the parity anomaly,” Phys. Rev. B 88
2013
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D. Kamburov, Y. Liu, M. A. Mueed, M. Shayegan, L. N. Pfeiffer, K. W. West, and K. W. Baldwin, “What Determines the Fermi Wave Vector of Composite Fermions?” Phys. Rev. Lett 113
2014
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2014
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2014
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2014
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2014
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P. Maher et al. , “Tunable fractional quantum Hall phases in bilayer graphene,” Science 345
2014
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