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arxiv: 1803.03997 · v1 · pith:NPT5H3GVnew · submitted 2018-03-11 · ✦ hep-th

Bulk Matter and the Boundary Quantum Null Energy Condition

classification ✦ hep-th
keywords bulkenergyqnecconditionmatternullboundarycertain
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We investigate the quantum null energy condition (QNEC) in holographic CFTs, focusing on half-spaces and particular classes of states. We present direct, and in certain cases nonperturbative, calculations for both the diagonal and off- diagonal variational derivatives of entanglement entropy. In d > 2, we find that the QNEC is saturated. We compute relations between the off-diagonal variation of entanglement, boundary relative entropy, and the bulk stress tensor. Strong subadditivity then leads to energy conditions in the bulk. In d = 2, we find that the QNEC is in general not saturated when the Ryu-Takayanagi surface intersects bulk matter. Moreover, when bulk matter is present the QNEC can imply new bulk energy conditions. For a simple class of states, we derive an example that is stronger than the bulk averaged null energy condition and reduces to it in certain limits.

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Cited by 1 Pith paper

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  1. Curious QNEIs from QNEC: New Bounds on Null Energy in Quantum Field Theory

    hep-th 2025-10 unverdicted novelty 6.0

    Derives new state-independent lower bounds on semi-local integrals of null energy flux in QFTs of two and higher dimensions using QNEC, strong subadditivity, and modular Hamiltonians.