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A novel approach to non-commutative gauge theory

机译:非换向仪表理论的一种新方法

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A bstract We propose a field theoretical model defined on non-commutative space-time with non-constant non-commutativity parameter Θ( x ), which satisfies two main requirements: it is gauge invariant and reproduces in the commutative limit, Θ → 0, the standard U(1) gauge theory. We work in the slowly varying field approximation where higher derivatives terms in the star commutator are neglected and the latter is approximated by the Poisson bracket, ? i [ f ,? g ]_(★)?≈?{ f ,? g }. We derive an explicit expression for both the NC deformation of Abelian gauge transformations which close the algebra [ δ _( f ), δg ] A = δ _({ f , g }) A , and the NC field strength ?, covariant under these transformations, δ _( f )??=?{?,? f }. NC Chern-Simons equations are equivalent to the requirement that the NC field strength, ?, should vanish identically. Such equations are non-Lagrangian. The NC deformation of Yang-Mills theory is obtained from the gauge invariant action, S ?=??∫??~(2). As guiding example, the case of su (2)-like non-commutativity, corresponding to rotationally invariant NC space, is worked out in detail.
机译:Bstract我们提出了一种在非换向空间时间内定义的现场理论模型,其具有非恒定非共度参数θ(x),该参数θ(x)满足两个主要要求:它是仪表不变,在换向极限中再现θ→0,标准U(1)仪表理论。我们在慢慢变化的田间逼近工作,其中星形换向器中的更高衍生物术语被忽略,后者被泊松支架近似?如果 ,? g] _(★)?≈α{f,? G }。我们推导出明确的表达式,用于靠近代数[Δ_(f),Δg] a =Δ_({f,g})a和nc场强的变形的NC变形的明确表达式,以及NC场强度?,在这些下的协调变换,δ_(f)?? =?{?,? F }。 NC Chern-Simons方程相当于NC场强的要求,应该相同地消失。这样的等式是非拉格朗日。阳厂理论的NC变形是从仪表不变动作获得的,s?= ??∫??〜(2)。作为指导示例,详细研究了对应于旋转不变的NC空间的SU(2)的情况的情况。

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