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Quantum Monte Carlo calculations of two neutrons in finite volume

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arxiv 1604.01387 v2 pith:LUHZAEZD submitted 2016-04-05 nucl-th hep-lathep-ph

classification nucl-thhep-lathep-ph
keywords calculationscarloeffectiveenergiesfieldfinitemonteneutrons
verification ladder T0 review T1 audit T2 compute T3 formal
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Ab initio calculations provide direct access to the properties of pure neutron systems that are challenging to study experimentally. In addition to their importance for fundamental physics, their properties are required as input for effective field theories of the strong interaction. In this work, we perform auxiliary-field diffusion Monte Carlo calculations of the ground and first excited state of two neutrons in a finite box, considering a simple contact potential as well as chiral effective field theory interactions. We compare the results against exact diagonalizations and present a detailed analysis of the finite-volume effects, whose understanding is crucial for determining observables from the calculated energies. Using the L\"uscher formula, we extract the low-energy S-wave scattering parameters from ground- and excited-state energies for different box sizes.

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  1. Finite-volume quantization condition from the $N/D$ representation

    hep-lat 2024-11 conditional novelty 7.0 of 10

    A finite-volume quantization condition based on the N/D representation is derived and claimed to remain valid when the energy coincides with left-hand cuts, where the original Luescher condition fails.

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