Title of article :
A unified formalism for the basic nuclear matrix elements in semi-leptonic processes
Original Research Article
Author/Authors :
V.C. Chasioti، نويسنده , , T.S. Kosmas and P.C. Divari، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2009
Abstract :
A general compact formalism, appropriate for the description of transition amplitudes in semi-leptonic processes involving lepton–nucleus interactions, is presented. Closed analytic expressions for the reduced matrix elements of all the basic tensor operators originating from a multipole expansion of the relevant hadronic current density and the use of harmonic oscillator basis are derived. The method improves over the well-known Horie–Sasaki formalism used the last decades as well as over other similar methods employed in nuclear many-body calculations. As a concrete application, we present results of differential cross sections for the neutral-current neutrino–nucleus reaction View the MathML source obtained with state-by-state calculations in the context of the quasi-particle random phase approximation (QRPA).
Keywords :
Multipole matrix elements , Neutrino–nucleus reactions , Harmonic oscillator basis , Lepton–nucleus interactions
Journal title :
Nuclear physics A
Journal title :
Nuclear physics A