activity
20182020
collaborators

6 papers

hep-th2020

Entanglement Amplification from Rotating Black Holes

Matthew P. G. Robbins, Laura J. Henderson, Robert B. Mann

The quantum vacuum has long been known to be characterized by field correlations between spacetime points. These correlations can be swapped with a pair of particle detectors, mode…

quant-ph2020

Entanglement harvesting with coherently delocalized matter

Nadine Stritzelberger, Laura J. Henderson, Valentina Baccetti +2

We study entanglement harvesting for matter systems such as atoms, ions or molecules, whose center of mass degrees of freedom are quantum delocalized and which couple to a relativi…

quant-ph2020

Bandlimited Entanglement Harvesting

Laura J. Henderson, Nicolas C. Menicucci

There are many reasons to believe that there is a fundamental minimum length scale below which distances cannot be reliably resolved. One method of constructing a quantum field wit…

quant-ph2020

Quantum Temporal Superposition: the case of QFT

Laura J. Henderson, Alessio Belenchia, Esteban Castro-Ruiz +4

Quantum field theory is completely characterized by the field correlations between spacetime points. In turn, some of these can be accessed by locally coupling to the field simple…

gr-qc2019

The BTZ black hole exhibits anti-Hawking phenomena

Laura J. Henderson, Robie A. Hennigar, Robert B. Mann +2

The Unruh effect is a surprising prediction of quantum field theory that asserts accelerating observers perceive a thermal spectrum of particles with a temperature proportional to…

quant-ph2018

Entangling detectors in anti-de Sitter space

Laura J. Henderson, Robie A. Hennigar, Robert B. Mann +2

We examine in -dimensional anti-de Sitter (AdS) space the phenomena of entanglement harvesting - the process in which a pair of detectors (two-level atoms) extract entanglem…