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Novel approach to super Yang-Mills theory on lattice. Exact fermionic symmetry and ``Ichimatsu'' pattern

Katsumi Itoh et al JHEP02(2003)033   doi: 10.1088/1126-6708/2003/02/033  Help

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Katsumi Itoh1, Mitsuhiro Kato2, Hideyuki Sawanaka2, Hiroto So2 and Naoya Ukita2
1 Faculty of Education, Niigata University, Niigata 950-2181, Japan
2 Institute of Physics, University of Tokyo, Komaba, Meguro-ku, 153-8902 Tokyo, Japan
3 Department of Physics, Niigata University, Niigata 950-2181, Japan
E-mail: so@muse.sc.niigata-u.ac.jp

Abstract. We present a lattice theory with an exact fermionic symmetry, which mixes the link and the fermionic variables. The staggered fermionic variables may be reconstructed into a Majorana fermion in the continuum limit. The gauge action has a novel structure. Though it is the ordinary plaquette action, two different couplings are assigned in the ``Ichimatsu pattern'' or the checkered pattern. In the naive continuum limit, the fermionic symmetry survives as a continuum (or an O(a0)) symmetry. The transformation of the fermion is proportional to the field strength multiplied by the difference of the two gauge couplings in this limit. This work is an extension of our recently proposed cell model toward the realization of supersymmetric Yang-Mills theory on lattice.

Key words: Nonperturbative Effects; Lattice Gauge Field Theories; Supersymmetry and Duality

Received 28 October 2002, accepted for publication 18 February 2003
Published 3 March 2003

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