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Quantum Algorithms

Duality between weak and strong interactions in quantum gases

arXiv
Authors: Etienne Granet, Bruno Bertini, Fabian H. L. Essler

Year

2021

Paper ID

61458

Status

Preprint

Abstract Read

~2 min

Abstract Words

126

Citations

N/A

Abstract

In one dimensional quantum gases there is a well known "duality" between hard core bosons and non-interacting fermions. However, at the field theory level, no exact duality connecting strongly interacting bosons to weakly interacting fermions is known. Here we propose a solution to this long standing problem. Our derivation relies on regularizing the only point-like interaction between fermions in 1D that induces a discontinuity in the wave function proportional to its derivative. In contrast to all known regularisations our potential is weak for small interaction strengths. Crucially, this allows one to apply standard methods of diagrammatic perturbation theory to strongly interacting bosons. As a first application we compute the finite temperature spectral function of the Cheon-Shigehara model, the fermionic model dual to the celebrated Lieb-Liniger model.

Why This Paper Matters

  • It adds a 2021 reference point for readers tracking recent quantum research.
  • In one dimensional quantum gases there is a well known "duality" between hard core bosons and non-interacting fermions.

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