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- W3100687576 abstract "Universal vector wave equations allowing for a unified description of anyons, and also of usual bosons and fermions in the plane are proposed. The existence of two essentially different types of anyons, based on unitary and also on non-unitary infinite-dimensional half-bounded representations of the (2 + 1)D Lorentz algebra is revealed. Those associated with non-unitary representations interpolate between bosons and fermions. The extended formulation of the theory includes the previously known Jackiw–Nair (JN) and Majorana–Dirac (MD) descriptions of anyons as particular cases, and allows us to compose bosons and fermions from entangled anyons. The theory admits a simple supersymmetric generalization, in which the JN and MD systems are unified in N = 1 and N = 2 supermultiplets. Two different non-relativistic limits of the theory are investigated. The usual one generalizes Lévy–Leblond's spin 1/2 theory to arbitrary spin, as well as to anyons. The second, “Jackiw–Nair” limit (that corresponds to Inönü–Wigner contraction with both anyon spin and light velocity going to infinity), is generalized to boson/fermion fields and interpolating anyons. The resulting exotic Galilei symmetry is studied in both the non-supersymmetric and supersymmetric cases." @default.
- W3100687576 created "2020-11-23" @default.
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- W3100687576 creator A5011515187 @default.
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- W3100687576 date "2010-09-01" @default.
- W3100687576 modified "2023-10-18" @default.
- W3100687576 title "Bosons, fermions and anyons in the plane, and supersymmetry" @default.
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- W3100687576 doi "https://doi.org/10.1016/j.aop.2010.02.007" @default.
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