activity
20152022
most citedInterplay of Soundcone and Supersonic Propagation in Lattice Models with Power Law Interactions

45 citations · 47 across the 2 of their papers we have counts for

collaborators

6 papers

physics.soc-ph2022★ 2 cited

Demand-driven design of bicycle infrastructure networks for improved urban bikeability

Christoph Steinacker, David-Maximilian Storch, Marc Timme +1

Cycling is a crucial part of sustainable urban transportation. Promoting cycling critically relies on a sufficiently developed bicycle infrastructure. However, designing efficient…

physics.soc-ph2021

Spontaneous symmetry breaking in ride-sharing adoption dynamics

Henrik Wolf, David-Maximilian Storch, Marc Timme +1

Symmetry breaking ubiquitously occurs across complex systems, from phase transition in statistical physics to self-organized lane formation in pedestrian dynamics. Here, we uncover…

physics.soc-ph2020

Traffic flow splitting from crowdsourced digital route choice support

David-Maximilian Storch, Malte Schröder, Marc Timme

Digital technology is fundamentally transforming human mobility. Route choices in particular are greatly affected by the availability of traffic data, increased connectivity of dat…

physics.soc-ph2020

Incentive-driven transition to high ride-sharing adoption

David-Maximilian Storch, Marc Timme, Malte Schröder

Ride-sharing - the combination of multiple trips into one - may substantially contribute towards sustainable urban mobility. It is most efficient at high demand locations with many…

physics.soc-ph2020

Anomalous supply shortages from dynamic pricing in on-demand mobility

Malte Schröder, David-Maximilian Storch, Philip Marszal +1

Dynamic pricing schemes are increasingly employed across industries to maintain a self-organized balance of demand and supply. However, throughout complex dynamical systems, uninte…

quant-ph2015★ 45 cited

Interplay of Soundcone and Supersonic Propagation in Lattice Models with Power Law Interactions

David-Maximilian Storch, Mauritz van den Worm, Michael Kastner

We study the spreading of correlations and other physical quantities in quantum lattice models with interactions or hopping decaying like with the distance . Our focus…