activity
20182020
most citedHolographically-controlled random numbers from entangled twisted photons

4 citations · 4 across the 1 of their papers we have counts for

collaborators

5 papers

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…

physics.class-ph2019

Random number generation & distribution out of thin (or thick) air

Nicholas Bornman, Andrew Forbes, Achim Kempf

Much scientific work has focused on the generation of random numbers as well as the distribution of said random numbers for use as a cryptographic key. However, emphasis is often p…

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-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

Contrast inverted ghost imaging with non-interacting photons

Nicholas Bornman, Megan Agnew, Feng Zhu +3

Ghost imaging is the remarkable process where an image can be formed from photons that have not "seen" the object. Traditionally this phenomenon has required initially correlated b…