The generalization of Lorentz invariance to solvable two-dimensional lattice fermion models has been formulated in terms of Baxter's corner transfer matrix. In these models, the lattice Hamiltonian and boost operator are given by fermionized nearest-neighbor Heisenberg spin chain operators. The transformation properties of the local lattice fermion operators under a boost provide a natural and precise way of generalizing the chiral structure of a continuum Dirac field to the lattice. The resulting formulation differs from both the Wilson and staggered (Kogut-Susskind) prescriptions. In particular, an axial Q(5) rotation is sitewise local, while the vector charge rotation mixes nearest neighbors on even and odd sublattices.
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SCRI, The Florida State Univ., SCL 473, Tallahassee, FL 32306-4130, United StatesSCRI, The Florida State Univ., SCL 473, Tallahassee, FL 32306-4130, United States
Edwards, Robert G.
Heller, Urs M.
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SCRI, The Florida State Univ., SCL 473, Tallahassee, FL 32306-4130, United StatesSCRI, The Florida State Univ., SCL 473, Tallahassee, FL 32306-4130, United States
Heller, Urs M.
Narayanan, Rajamani
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SCRI, The Florida State Univ., SCL 473, Tallahassee, FL 32306-4130, United StatesSCRI, The Florida State Univ., SCL 473, Tallahassee, FL 32306-4130, United States