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arxiv: 1001.1535 · v1 · submitted 2010-01-11 · ⚛️ physics.atom-ph · nucl-th

Toward the Application of Three-Dimensional Approach to Few-body Atomic Bound States

classification ⚛️ physics.atom-ph nucl-th
keywords amplitudemomentumtransitionangularapplicationapproachatomicbeen
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The first step toward the application of an effective non partial wave (PW) numerical approach to few-body atomic bound states has been taken. The two-body transition amplitude which appears in the kernel of three-dimensional Faddeev-Yakubovsky integral equations is calculated as function of two-body Jacobi momentum vectors, i.e. as a function of the magnitude of initial and final momentum vectors and the angle between them. For numerical calculation the realistic interatomic interactions HFDHE2, HFD-B, LM2M2 and TTY are used. The angular and momentum dependence of the fully off-shell transition amplitude is studied at negative energies. It has been numerically shown that, similar to the nuclear case, the transition amplitude exhibits a characteristic angular behavior in the vicinity of 4He dimer pole.

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