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quant-ph2026

Symmetric telecloning and remote quantum state inference

Adam G. Hawkins, Hannah McAleese, Hyukjoon Kwon

Teleporting unknown quantum states between distant nodes of a network is a significant feature of quantum communication. Few studies, however, have been conducted on tele…

quant-ph2025

Strategies for entanglement distribution in optical fiber networks

Hannah McAleese, Anuj Agrawal, Vivek Vasan +5

Distributing entanglement over long distances remains a challenge due to its fragility when exposed to environmental effects. In this work, we compare various entanglement distribu…

quant-ph2025

Engineering nonlinear boson-boson interactions using mediating spin systems

Hannah McAleese, Mauro Paternostro, Ricardo Puebla

We present a protocol to create entangled coherent states by engineering cross-Kerr interactions between bosonic systems endowed with (externally driven) internal spin-like degrees…

quant-ph2024

Distributing quantum correlations through local operations and classical resources

Adam G. Hawkins, Hannah McAleese, Mauro Paternostro

Distributing quantum correlations to each node of a network is a key aspect of quantum networking. Here, we present a robust, physically motivated protocol by which global quantum…

quant-ph2024

Critical assessment of information back-flow in measurement-free teleportation

Hannah McAleese, Mauro Paternostro

We assess a scheme for measurement-free quantum teleportation from the perspective of the resources underpinning its performance. In particular, we focus on recently made claims ab…

quant-ph2024

Entanglement distribution through separable states via a zero-added-loss photon multiplexing inspired protocol

Conall J. Campbell, Adam G. Hawkins, Giorgio Zicari +2

The recently proposed zero-added-loss multiplexing (ZALM) source of entangled photons enables higher efficiency in entanglement distribution than spontaneous parametric down-conver…