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The Index Theorem and Universality Properties of the Low-lying Eigenvalues of Improved Staggered Quarks

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arxiv hep-lat/0406010 v1 pith:CV7D4QZ6 submitted 2004-06-08 hep-lat hep-th

The Index Theorem and Universality Properties of the Low-lying Eigenvalues of Improved Staggered Quarks

classification hep-lat hep-th
keywords modesstaggeredchargechiralitycleargluonimprovedindex
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study various improved staggered quark Dirac operators on quenched gluon backgrounds in lattice QCD generated using a Symanzik-improved gluon action. We find a clear separation of the spectrum into would-be zero modes and others. The number of would-be zero modes depends on the topological charge as expected from the Index Theorem, and their chirality expectation value is large (approximately 0.7). The remaining modes have low chirality and show clear signs of clustering into quartets and approaching the random matrix theory predictions for all topological charge sectors. We conclude that improvement of the fermionic and gauge actions moves the staggered quarks closer to the continuum limit where they respond correctly to QCD topology.

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