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20122020
most citedOpen source software in quantum computing

187 citations · 201 across the 3 of their papers we have counts for

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Showing 2018Show all

7 papers · 1 filter

quant-ph2018187 cited

Open source software in quantum computing

Mark Fingerhuth, Tomáš Babej, Peter Wittek

Open source software is becoming crucial in the design and testing of quantum algorithms. Many of the tools are backed by major commercial vendors with the goal to make it easier t…

quant-ph2018

Evaluating probabilistic programming languages for simulating quantum correlations

Abdul Obeid, Peter D. Bruza, Peter Wittek

This article explores how probabilistic programming can be used to simulate quantum correlations in an EPR experimental setting. Probabilistic programs are based on standard probab…

physics.soc-ph2018

Satisfied-defect, unsatisfied-cooperate: An evolutionary dynamics of cooperation led by aspiration

Ik Soo Lim, Peter Wittek

Evolutionary game theory has been widely used to study the evolution of cooperation in social dilemmas where imitation-led strategy updates are typically assumed. However, results…

quant-ph2018

Verifying the output of quantum optimizers with ground-state energy lower bounds

Flavio Baccari, Christian Gogolin, Peter Wittek +1

Solving optimisation problems encoded in the ground state of classical-spin systems is a focus area for quantum computing devices, providing upper bounds to the unknown solution. T…

quant-ph2018

Bayesian Deep Learning on a Quantum Computer

Zhikuan Zhao, Alejandro Pozas-Kerstjens, Patrick Rebentrost +1

Bayesian methods in machine learning, such as Gaussian processes, have great advantages com-pared to other techniques. In particular, they provide estimates of the uncertainty asso…

quant-ph2018

Automated discovery of characteristic features of phase transitions in many-body localization

Patrick Huembeli, Alexandre Dauphin, Peter Wittek +1

We identify a new "order parameter" for the disorder driven many-body localization (MBL) transition by leveraging artificial intelligence. This allows us to pin down the transition…