In quantum networks with randomly distributed initial entanglement, classical entanglement percolation depends only on the average value while quantum protocols degrade with increasing distribution width.
Sixty years of percolation
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abstract
Percolation models describe the inside of a porous material. The theory emerged timidly in the middle of the twentieth century before becoming one of the major objects of interest in probability and mathematical physics. The golden age of percolation is probably the eighties, during which most of the major results were obtained for the most classical of these models, named Bernoulli percolation, but it is really the two following decades which put percolation theory at the crossroad of several domains of mathematics. In this short (and very partial) review, we propose to describe briefly some of the recent progress as well as some famous challenges remaining in the field. This review is not intended to probabilists (and a fortiori not to specialists in percolation theory): the target audience is mathematicians of all kinds.
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quant-ph 1years
2026 1verdicts
UNVERDICTED 1representative citing papers
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Entanglement percolation in random quantum networks
In quantum networks with randomly distributed initial entanglement, classical entanglement percolation depends only on the average value while quantum protocols degrade with increasing distribution width.