62 research outputs found

    Extension of worldline computational algorithms for QCD to open fermionic contours

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    The worldline casting of a gauge field system with spin-1/2 matter fields has provided a, particle-based, first quantization formalism in the framework of which the Bern-Kosower algorithms for efficient computations in QCD acquire a simple interpretation. This paper extends the scope of applicability of the worldline scheme so as to include open fermionic paths. Specific algorithms are established which address themselves to the fermionic propagator and which are directly applicable to any other process involving external fermionic states. It is also demonstrated that in this framework the sole agent of dynamics operating in the system is the Wilson line (loop) operator, which makes a natural entrance in the worldline action; everything else is associated with geometrical properties of particle propagation, of which the most important component is Polyakov's spin factor.Comment: 24 page

    N Delta - Transition Form Factors at Low Momentum Transfer

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    The three complex form factors entering the Δ→Nγ∗\Delta\to N\gamma^\ast vertex are calculated to O(ϵ3){\cal O}(\epsilon^3) in the framework of a chiral effective theory with explicit Δ\Delta(1232) degrees of freedom. Furthermore, the role of presently unknown low energy constants that affect the values of EMR and CMR is elucidated.Comment: 5 pages, 3 figures, Oral contribution given at the 8th International Conference on the Structure of Baryons (Baryons '98), Bonn, Germany, Sept. 22-26, 199
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