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20122022
most citedCharacterization of high-dimensional entangled systems via mutually unbiased measurements

114 citations · 296 across the 29 of their papers we have counts for

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12 papers · 1 filter

quant-ph20204 cited

Holographically-controlled random numbers from entangled twisted photons

Michael de Oliveira, Nicholas Bornman, Andrew Forbes

We present a quantum random number generator (QRNG) based on the random outcomes inherent in projective measurements on a superposition of quantum states of light. Firstly, we use…

quant-ph2019

Experimental quantum secret sharing with spin-orbit structured photons

Michael de Oliveira, Isaac Nape, Jonathan Pinnell +2

Secret sharing allows three or more parties to share secret information which can only be decrypted through collaboration. It complements quantum key distribution as a valuable res…

quant-ph2019

Quantum imaging using relativistic detectors

Nicholas Bornman, Achim Kempf, Andrew Forbes

Imaging in quantum optics (QO) is usually formulated in the languages of quantum mechanics and Fourier optics. While relatively advanced fields, notions such as different reference…

quant-ph20191 cited

Multi-dimensional entanglement transport through single-mode fibre

Jun Liu, Isaac Nape, Qianke Wang +3

The global quantum network requires the distribution of entangled states over long distances, with significant advances already demonstrated using entangled polarisation states, re…

quant-ph2019

Ghost imaging with engineered quantum states by Hong-Ou-Mandel interference

Nicholas Bornman, Shashi Prabhakar, Adam Vallés +2

Traditional ghost imaging experiments exploit position correlations between correlated states of light. These correlations occur directly in spontaneous parametric down-conversion…

quant-ph2018

A versatile quantum walk resonator with bright classical light

Bereneice Sephton, Angela Dudley, Gainluca Ruffato +7

In a Quantum Walk (QW) the "walker" follows all possible paths at once through the principle of quantum superposition, differentiating itself from classical random walks where one…