activity
20182021
most citedBoson Sampling in Low-depth Optical Systems

2 citations · 3 across the 2 of their papers we have counts for

collaborators

5 papers

quant-ph20212 cited

Boson Sampling in Low-depth Optical Systems

R. van der Meer, S. Huber, P. W. H. Pinkse +2

Optical losses are the main obstacle to demonstrating a quantum advantage via boson sampling without leaving open the possibility of classical spoofing. We propose a method for gen…

physics.optics20211 cited

Observation of open scattering channels

Reinier van der Meer, Michiel de Goede, Ben Kassenberg +7

The existence of fully transmissive eigenchannels ("open channels") in a random scattering medium is a counterintuitive and unresolved prediction of random matrix theory. The smoki…

quant-ph2020

A 12-mode Universal Photonic Processor for Quantum Information Processing

Caterina Taballione, Reinier van der Meer, Henk J. Snijders +9

Photonic processors are pivotal for both quantum and classical information processing tasks using light. In particular, linear optical quantum information processing requires both…

quant-ph2020

Optimizing spontaneous parametric down-conversion sources for boson sampling

R. van der Meer, J. J. Renema, B. Brecht +2

An important step for photonic quantum technologies is the demonstration of a quantum advantage through boson sampling. In order to prevent classical simulability of boson sampling…

quant-ph2018

Spatially encoded light for Large-alphabet Quantum Key Distribution

T. B. H. Tentrup, W. M. Luiten, R. van der Meer +2

Most Quantum Key Distribution protocols use a two-dimensional basis such as HV polarization as first proposed by Bennett and Brassard in 1984. These protocols are consequently limi…