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The averaged null energy condition for general quantum field theories in two dimensions

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arxiv math-ph/9904036 v1 pith:XIM6LB6U submitted 1999-04-29 math-ph gr-qchep-thmath.MP

classification math-phgr-qchep-thmath.MP
keywords fieldaveragedconditionenergynullquantumtheorygeneral
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It is shown that the averaged null energy condition is fulfilled for a dense, translationally invariant set of vector states in any local quantum field theory in two-dimensional Minkowski spacetime whenever the theory has a mass gap and possesses an energy-momentum tensor. The latter is assumed to be a Wightman field which is local relative to the observables, generates locally the translations, is divergence-free, and energetically bounded. Thus the averaged null energy condition can be deduced from completely generic, standard assumptions for general quantum field theory in two-dimensional flat spacetime.

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  1. Light cone OPE in a CFT with lowest twist scalar primary

    hep-th 2019-08 conditional novelty 5.0 of 10

    In a unitary CFT with a lowest-twist scalar primary, the scalar contributes to the lightcone OPE only at subleading order, and no positive averaged operator analogous to the ANEC exists for a scalar integral.

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