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The exact discontinuity of a partial wave along the left-hand cut and the exact N/D method in non-relativistic scattering

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arxiv 1810.12242 v1 pith:T6PNXDEE submitted 2018-10-29 hep-ph cond-mat.quant-gashep-thnucl-thquant-ph

The exact discontinuity of a partial wave along the left-hand cut and the exact N/D method in non-relativistic scattering

classification hep-ph cond-mat.quant-gashep-thnucl-thquant-ph
keywords equationexactdiscontinuitymethodscatteringallowsalongamplitudes
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We first deduce the analytical continuation in the complex planes of the initial and final three-momenta of the Lippmann-Schwinger equation in coupled or uncoupled partial-wave amplitudes. This result allows us to deduce a master equation whose solution is the exact discontinuity of the on-shell partial-wave amplitudes along the left-hand cut. This equation is always a linear non-singular integral equation whose solution is fixed exclusively by the knowledge of the potential, applicable to either regular or singular potentials. The capability of calculating exactly this discontinuity allows one to settle the exact $N/D $ method in two-body non-relativistic scattering for coupled and uncoupled waves. We exemplify this new advance in scattering theory by explicitly checking the agreement between the Lippmann-Schwinger equation with the corresponding solutions of the exact $N/D$ method for some examples that involve regular and singular potentials, either attractive or repulsive.

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Cited by 3 Pith papers

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  1. Effective Range Expansion with the Left-Hand Cut: Higher Order Improvements

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    Extended the generalized effective-range expansion, including the left-hand cut from one-particle exchange, to O(k^6) with a new relativistic version, validated against exact Yukawa-potential solutions of the Lippmann...

  2. Bootstrapping Two-Nucleon Effective Field Theories

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    Bootstrap consistency checks show that the NLO chiral EFT potential for the 1S0 two-nucleon wave remains valid over a significantly wider energy range than the LO version when compared to Granada phase shifts.

  3. Uncertainty quantification and falsification of Chiral Nuclear Potentials

    nucl-th 2019-07 unverdicted novelty 5.0

    Chiral nuclear potentials exhibit systematic discrepancies with experimental NN scattering data in regimes where the theory is expected to perform best.