physics.soc-ph
Papers filed under physics.soc-ph on arXiv, each one already summarized by Paperlayer. Open any of them to read the summary beside the original PDF, with every point linked to the line, figure, or table it came from.
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241 to 300 of 1,033
Graphs are maximally expressive for higher-order interactions
Tiago P. Peixoto, Leto Peel, Thilo Gross +1
physics.soc-phcond-mat.dis-nncond-mat.stat-mecharXiv:2602.16937v22026Sustained Heterogeneity: an emergent collective mechanism in LLM-driven traffic
Yujun Qi, Yangyang Guan
physics.soc-phcs.MAnlin.AOarXiv:2608.29174v12026From the betweenness centrality in street networks to structural invariants in random planar graphs
Alec Kirkley, Hugo Barbosa, Marc Barthelemy +1
physics.soc-pharXiv:1709.05718v22017The virtues and vices of equilibrium and the future of financial economics
J. Doyne Farmer, John Geanakoplos
q-fin.GNphysics.soc-pharXiv:0803.2996v12008Predicting commuter flows in spatial networks using a radiation model based on temporal ranges
Yihui Ren, Mária Ercsey-Ravasz, Pu Wang +2
physics.soc-phcond-mat.stat-mechcs.SIarXiv:1410.4849v12014Epidemic spreading on complex networks with community structures
Clara Stegehuis, Remco van der Hofstad, Johan S. H. van Leeuwaarden
physics.soc-phcs.SIarXiv:1611.06092v12016On the Origins of Hierarchy in Complex Networks
Bernat Corominas-Murtra, Joaquín Goñi, Ricard V. Solé +1
physics.soc-phcond-mat.stat-mecharXiv:1303.2503v22013Scikit-mobility: a Python library for the analysis, generation and risk assessment of mobility data
Luca Pappalardo, Filippo Simini, Gianni Barlacchi +1
physics.soc-pharXiv:1907.07062v62019Evolutionary Dynamics of Information Diffusion over Social Networks
Chunxiao Jiang, Yan Chen, K. J. Ray Liu
cs.SIphysics.soc-pharXiv:1312.0317v12013Turning the tables in citation analysis one more time: Principles for comparing sets of documents
Loet Leydesdorff, Lutz Bornmann, Rüdiger Mutz +1
cs.DLphysics.soc-pharXiv:1101.3863v22011Social Influence and Unfollowing Accelerate the Emergence of Echo Chambers
Kazutoshi Sasahara, Wen Chen, Hao Peng +3
cs.CYcs.SIphysics.soc-pharXiv:1905.03919v32019The physics of spreading processes in multilayer networks
Manlio De Domenico, Clara Granell, Mason A. Porter +1
physics.soc-phcond-mat.dis-nncs.SIarXiv:1604.02021v22016The Multilayer Temporal Network of Public Transport in Great Britain
Riccardo Gallotti, Marc Barthelemy
physics.soc-pharXiv:1501.02159v12015Identifying the Community Structure of the International-Trade Multi Network
Matteo Barigozzi, Giorgio Fagiolo, Giuseppe Mangioni
physics.soc-phcs.SIarXiv:1009.1731v22010Omega-N: Interpretable Structural Node Descriptors and Their Applicability Domain
Alberto Acedo
cs.SIcs.LGphysics.soc-pharXiv:2609.01633v22026The Dynamics of Health Behavior Sentiments on a Large Online Social Network
Marcel Salathé, Duy Q. Vu, Shashank Khandelwal +1
cs.SIphysics.soc-pharXiv:1207.7274v12012Assessing Vaccination Sentiments with Online Social Media: Implications for Infectious Disease Dynamics and Control
Marcel Salathé, Shashank Khandelwal
cs.SIphysics.soc-phq-bio.PEarXiv:1105.4502v22011Identification of influential spreaders in complex networks
Maksim Kitsak, Lazaros K. Gallos, Shlomo Havlin +4
physics.soc-pharXiv:1001.5285v32010Laplacian Dynamics and Multiscale Modular Structure in Networks
R. Lambiotte, J. -C. Delvenne, M. Barahona
physics.soc-pharXiv:0812.1770v32008Quantifying social group evolution
Gergely Palla, Albert-Laszlo Barabasi, Tamas Vicsek
stat.MEphysics.soc-phstat.AParXiv:0704.0744v12007Statistical physics approaches to the complex Earth system
Jingfang Fan, Jun Meng, Josef Ludescher +5
physics.soc-phcond-mat.stat-mechphysics.data-anarXiv:2009.04918v12020Interdependence and Predictability of Human Mobility and Social Interactions
Manlio De Domenico, Antonio Lima, Mirco Musolesi
physics.soc-phcs.SInlin.CDarXiv:1210.2376v22012Career on the Move: Geography, Stratification, and Scientific Impact
Pierre Deville, Dashun Wang, Roberta Sinatra +3
physics.soc-phcs.SIphysics.data-anarXiv:1404.6247v12014Graph partitions and cluster synchronization in networks of oscillators
Michael T. Schaub, Neave O'Clery, Yazan N. Billeh +3
physics.soc-phcs.SIeess.SYarXiv:1608.04283v22016Understanding individual human mobility patterns
M. C. Gonzalez, C. A. Hidalgo, A. -L. Barabasi
physics.soc-phcond-mat.stat-mechcs.CYarXiv:0806.1256v12008Quantifying randomness in real networks
Chiara Orsini, Marija Mitrović Dankulov, Almerima Jamakovic +9
physics.soc-phcond-mat.stat-mechcs.NIarXiv:1505.07503v22015Rock, Paper, Scissors, ... Dynamite - A Model of Disruption from New Technologies
Andrew J. Lohn
physics.soc-phcs.AIcs.ETarXiv:2609.00207v12026Subgraph Frequencies: Mapping the Empirical and Extremal Geography of Large Graph Collections
Johan Ugander, Lars Backstrom, Jon Kleinberg
cs.SIphysics.soc-pharXiv:1304.1548v22013Integrating adaptive human behavior into epidemic models with large language models
Yicheng Mao, Haoyang Li, Rob Deardon +1
physics.soc-phcs.AIarXiv:2608.29535v12026Scalable detection of statistically significant communities and hierarchies, using message-passing for modularity
Pan Zhang, Cristopher Moore
physics.soc-phcond-mat.stat-mechcs.SIarXiv:1403.5787v32014Systemic delay propagation in the US airport network
Pablo Fleurquin, Jose J. Ramasco, Victor M. Eguiluz
physics.soc-phcond-mat.stat-mecharXiv:1301.1136v12013Random walks on temporal networks
Michele Starnini, Andrea Baronchelli, Alain Barrat +1
cond-mat.stat-mechphysics.soc-pharXiv:1203.2477v22012Multilayer motif analysis of brain networks
Federico Battiston, Vincenzo Nicosia, Mario Chavez +1
physics.soc-phcond-mat.dis-nnq-bio.NCarXiv:1606.09115v22016Directed network modules
Gergely Palla, Illes J. Farkas, Peter Pollner +2
physics.soc-phcond-mat.stat-mechphysics.bio-pharXiv:physics/0703248v22007Indicators of the Interdisciplinarity of Journals: Diversity, Centrality, and Citations
Loet Leydesdorff, Ismael Rafols
cs.DLphysics.soc-pharXiv:1003.3613v22010Scaling Law of Urban Ride Sharing
Remi Tachet, Oleguer Sagarra, Paolo Santi +4
physics.soc-pharXiv:1610.09921v12016Towards real-world complexity: an introduction to multiplex networks
Kyu-Min Lee, Byungjoon Min, Kwang-Il Goh
physics.soc-phcond-mat.stat-mechcs.SIarXiv:1502.03909v12015A simple contagion process describes spreading of traffic jams in urban networks
Meead Saberi, Mudabber Ashfaq, Homayoun Hamedmoghadam +8
physics.soc-pheess.SYarXiv:1906.00585v22019An Army of Me: Sockpuppets in Online Discussion Communities
Srijan Kumar, Justin Cheng, Jure Leskovec +1
cs.SIcs.CYphysics.soc-pharXiv:1703.07355v12017Is the United States losing ground in science? A global perspective on the world science system
Loet Leydesdorff, Caroline Wagner
physics.soc-pharXiv:0911.1042v12009Defecting or not defecting: how to "read" human behavior during cooperative games by EEG measurements
F. De Vico Fallani, V. Nicosia, R. Sinatra +8
physics.soc-phcs.SIq-bio.NCarXiv:1101.5322v12011Effect of correlations on network controllability
Márton Pósfai, Yang-Yu Liu, Jean-Jacques Slotine +1
physics.soc-phcond-mat.stat-mechcs.SIarXiv:1203.5161v22012SoniMet - A tool for sonifying and visualizing the performance of single researchers
Tim Waterfield, Lutz Bornmann
cs.DLphysics.soc-pharXiv:2608.30274v12026Understanding the spreading power of all nodes in a network: a continuous-time perspective
Glenn Lawyer
cs.SIcs.CYphysics.soc-pharXiv:1405.6707v22014Weighted Multiplex Networks
Giulia Menichetti, Daniel Remondini, Pietro Panzarasa +2
physics.soc-phcond-mat.dis-nncond-mat.stat-mecharXiv:1312.6720v12013TiDeH: Time-Dependent Hawkes Process for Predicting Retweet Dynamics
Ryota Kobayashi, Renaud Lambiotte
cs.SIphysics.soc-pharXiv:1603.09449v12016Fast Gradient Attack on Network Embedding
Jinyin Chen, Yangyang Wu, Xuanheng Xu +3
physics.soc-phcs.SIarXiv:1809.02797v22018Modeling Information Propagation with Survival Theory
Manuel Gomez Rodriguez, Jure Leskovec, Bernhard Schoelkopf
cs.SIcs.DSphysics.soc-pharXiv:1305.3616v12013Gender gaps in urban mobility
Laetitia Gauvin, Michele Tizzoni, Simone Piaggesi +5
physics.soc-phcs.CYarXiv:1906.09092v12019Using social network analysis to prevent money laundering
A. Fronzetti Colladon, E. Remondi
cs.SIphysics.soc-phq-fin.GNarXiv:2105.05793v12021Realistic Control of Network Dynamics
Sean P. Cornelius, William L. Kath, Adilson E. Motter
cond-mat.dis-nnmath.OCnlin.AOarXiv:1307.0015v12013The Dynamics of Protest Recruitment through an Online Network
Sandra Gonzalez-Bailon, Javier Borge-Holthoefer, Alejandro Rivero +1
physics.soc-phcs.SIarXiv:1111.5595v22011Towards a new crown indicator: Some theoretical considerations
Ludo Waltman, Nees Jan van Eck, Thed N. van Leeuwen +2
cs.DLphysics.soc-pharXiv:1003.2167v22010Combining complex networks and data mining: why and how
M. Zanin, D. Papo, P. A. Sousa +4
physics.soc-phcs.DBcs.IRarXiv:1604.08816v22016Nature-based solutions in the urban context: terminology, classification and scoring for urban challenges and ecosystem services
Joana. A. C. Castellar, Lucia . A. Popartan, Josep Pueyo-Ros +6
cs.CYphysics.soc-pharXiv:2105.07814v12021Transport on coupled spatial networks
Richard G. Morris, Marc Barthelemy
cond-mat.dis-nnphysics.soc-pharXiv:1205.2776v22012The Role of Design Complexity in Technology Improvement
James McNerney, J. Doyne Farmer, Sid Redner +1
physics.soc-pharXiv:0907.0036v22009Universal features of correlated bursty behaviour
Márton Karsai, Kimmo Kaski, Albert-László Barabási +1
physics.soc-phcond-mat.stat-mechphysics.bio-pharXiv:1111.7235v12011Universal Predictability of Mobility Patterns in Cities
Xiao-Yong Yan, Chen Zhao, Ying Fan +2
physics.soc-pharXiv:1307.7502v22013Self-organized Natural Roads for Predicting Traffic Flow: A Sensitivity Study
Bin Jiang, Sijian Zhao, Junjun Yin
physics.data-anphysics.soc-pharXiv:0804.1630v32008