Spatial entanglement in two dimensional QCD: Renyi and Ryu-Takayanagi
entropies
- URL: http://arxiv.org/abs/2205.06724v1
- Date: Fri, 13 May 2022 16:05:13 GMT
- Title: Spatial entanglement in two dimensional QCD: Renyi and Ryu-Takayanagi
entropies
- Authors: Yizhuang Liu, Maciej A. Nowak, Ismail Zahed
- Abstract summary: We derive a formula for the replica partition function in the vacuum state.
We analyze the spatial entanglement of interacting Dirac fermions in two-dimensional QCD.
- Score: 0.23204178451683263
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: We derive a general formula for the replica partition function in the vacuum
state, for a large class of interacting theories with fermions, with or without
gauge fields, using the equal-time formulation on the light front. The result
is used to analyze the spatial entanglement of interacting Dirac fermions in
two-dimensional QCD. A particular attention is paid to the issues of infrared
cut-off dependence and gauge invariance. The Renyi entropy for a single
interval, is given by the rainbow dressed quark propagator to order ${\cal
O}(N_c)$. The contributions to order ${\cal O}(1)$, are shown to follow from
the off-diagonal and off mass-shell mesonic T-matrix, with no contribution to
the central charge. The construction is then extended to mesonic states on the
light front, and shown to probe the moments of the partonic PDFs for large
light-front separations. In the vacuum and for small and large intervals, the
spatial entanglement entropy following from the Renyi entropy, is shown to be
in agreement with the Ryu-Takayanagi geometrical entropy, using a soft-wall
AdS$_3$ model of two-dimensional QCD.
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