### Abstract

We use a modified directed path algorithm to study the finite temperature chiral singularities of two color lattice QCD with staggered fermions at strong coupling. Our lattice calculations are done at a fixed finite temperature in the broken phase with a variety of different quark masses. We find that to the lowest order, the behavior of our observables, namely the condensates and the decay constants are all consistent with the predictions of the low energy effective theory of our model. We further notice that in order to see consistency, the quark masses used in our lattice calculations need to be quite small than typically used.

Original language | English |
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Journal | Proceedings of Science |

Volume | 32 |

Publication status | Published - 2006 Jan 1 |

Event | 24th International Symposium on Lattice Field Theory, LATTICE 2006 - Tucson, United States Duration: 2006 Jul 23 → 2006 Jul 28 |

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### ASJC Scopus subject areas

- General

### Cite this

**Exploring the chiral singularities of two color lattice QCD at strong coupling.** / Jiang, F. -J.

Research output: Contribution to journal › Conference article

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TY - JOUR

T1 - Exploring the chiral singularities of two color lattice QCD at strong coupling

AU - Jiang, F. -J.

PY - 2006/1/1

Y1 - 2006/1/1

N2 - We use a modified directed path algorithm to study the finite temperature chiral singularities of two color lattice QCD with staggered fermions at strong coupling. Our lattice calculations are done at a fixed finite temperature in the broken phase with a variety of different quark masses. We find that to the lowest order, the behavior of our observables, namely the condensates and the decay constants are all consistent with the predictions of the low energy effective theory of our model. We further notice that in order to see consistency, the quark masses used in our lattice calculations need to be quite small than typically used.

AB - We use a modified directed path algorithm to study the finite temperature chiral singularities of two color lattice QCD with staggered fermions at strong coupling. Our lattice calculations are done at a fixed finite temperature in the broken phase with a variety of different quark masses. We find that to the lowest order, the behavior of our observables, namely the condensates and the decay constants are all consistent with the predictions of the low energy effective theory of our model. We further notice that in order to see consistency, the quark masses used in our lattice calculations need to be quite small than typically used.

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M3 - Conference article

VL - 32

JO - Proceedings of Science

JF - Proceedings of Science

SN - 1824-8039

ER -