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Open AccessArticle10.1103/physrevd.63.047701

Noncommutative fermionic field theories with smooth commutative limit

Dongsu Bak,Sung Ku Kim,Kwang‐Sup Soh,Jae Hyung Yee-2001-01-26-Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields
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TL;DRAbstract

We consider two model field theories on a noncommutative plane that have a smooth commutative limit. One is the nonrelativistic single-component fermion theory with a quartic interaction that vanishes identically in the commutative limit. The other is a scalar-fermion theory, which extends the scalar field theory with a quartic interaction by adding a fermion. We show the smooth commutative limits by computing the bound state energies and the two particle scattering amplitudes exactly.

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We consider two model field theories on a noncommutative plane that have a smooth commutative limit. One is the nonrelativistic single-component fermion theory with a quartic interaction that vanishes identically in the commutative limit. The other is a scalar-fermion theory, which extends the scalar field theory with a quartic interaction by adding a fermion. We show the smooth commutative limits by computing the bound state energies and the two particle scattering amplitudes exactly.

Keywords

Noncommutative geometryCommutative propertyLimit (mathematics)Field (mathematics)PhysicsNoncommutative quantum field theoryMathematical physicsPure mathematics

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