Prof. Dr. Urs Fischbacher is a full-time Professor at the Department of Economics at the University of Konstanz, holding the Chair of Behavioral Economics. He is also affiliated with the Thurgau Institute of Economics in Switzerland. Research Focus: Behavioral Economics, Experimental Economics, Game Theory, Social Preferences, Public Goods, Trust and Cooperation, Decision-Making under Stress, and Neuroeconomics. Key Projects: Evaluation of educational interventions in Colombia, analysis of leadership selection in inequality perception, and studies on social pension targeting in Bangladesh. Academic Contributions: His recent articles focus on super-additive cooperation mechanisms, responsibility attribution in decision chains, stress-induced prosociality, and diversity policy impacts. Work spans interdisciplinary collaborations with psychologists and neuroscientists. Contact: Based at the University of Konstanz (Room F315) and Thurgau Institute of Economics. Office hours require appointment via email.
F. Ömer Ilday is a distinguished physicist and Alexander von Humboldt Professor at Ruhr University Bochum since July 2023, holding a joint appointment in the Faculty of Electrical Engineering and Information Technology and Faculty of Physics and Astronomy. His pioneering work in ultrafast laser technology has transformed non-linear laser-matter interactions, with applications spanning precision manufacturing, medical surgery, and nanofabrication. Education: PhD in Physics, Cornell University (2003) Postdoctoral Research Scientist, Massachusetts Institute of Technology (2003-2005) Ilday's research centers on ultrafast laser development and materials science, focusing on GHz-repetition-rate burst-mode systems, nonlinear laser lithography, and self-organization phenomena. His interdisciplinary approach bridges photonics, plasma physics, and materials engineering to enable breakthroughs in nanostructuring, silicon processing, and laser-based manufacturing. Current work emphasizes developing high-power laser sources and exploring fundamental laser-matter interaction mechanisms for next-generation applications. His recent publications (2023-2025) reveal dominant trends in high-repetition-rate burst-mode lasers (up to 50 GHz), ablation efficiency optimization, and nonlinear laser lithography for 3D silicon structuring. These works demonstrate strong convergence between fundamental physics and industrial applications, particularly in medical surgery, nanofabrication, and materials synthesis, with increasing emphasis on self-organization principles in laser systems. Scientific awards: Turkish Academy of Sciences Outstanding Young Scientist Award (2006) Marie Curie International Reintegration Grant (2006) ERC Consolidator Grant (2014) - Turkey's first ERC Advanced Grant (2022) Election to Academia Europaea Election to Turkish Academy of Sciences Membership in Turkish and American Physical Societies Ilday has secured major competitive grants including two ERC awards and a Marie Curie fellowship, directing research teams at Bilkent University's Ultrafast Optics & Lasers Laboratory (UFOLAB) which developed technologies adopted globally. At RUB, he is establishing the Center for Complex Laser-Matter Interactions as an interdisciplinary hub fostering collaborations between photonics, plasma research, and materials science, with explicit goals for spin-off company formation and transdisciplinary innovation in manufacturing technologies. As founding director of UFOLAB at Bilkent University, Ilday developed laser systems deployed by research institutions worldwide and established Turkey's first laser company. His RUB center integrates electrical engineering and physics expertise to advance complex laser-matter interaction research, focusing on self-organizing laser systems, nanostructuring techniques, and applications in semiconductor manufacturing and medical technology through close industry partnerships.
Prof. Dr. Petra Schwille is a Director at the Max Planck Institute of Biochemistry and former C4 Professor of Biophysics at Dresden University of Technology . Her work spans molecular and cellular biophysics, synthetic biology, and single-molecule techniques. Academic disciplines: Natural sciences, biological sciences, physical sciences Key roles: Editorial Board member (Nature Methods, Biophysical Journal), Governing Council of Biophysical Society Research Focus includes membrane biophysics, protein interactions, and microfluidic systems. Her publications emphasize Fluorescence Correlation Spectroscopy (FCS) , receptor-ligand dynamics, and self-organization in bacterial cell division. Developed in vitro models for spatial regulation in cells Explored calmodulin availability and morphogen gradient formation Scientific Recognition includes prestigious awards like the Gottfried Wilhelm Leibniz Prize (2010) and the Biofuture grant (1998) . Max Planck Fellow (2005) Young Investigator Award (2003) Leadership & Service involves roles such as Dean of Studies for Nanobiophysics at TU Dresden and Vice Dean of the Dresden International Graduate School for Biomedicine and Bioengineering (DIGS-BB) . She also contributes to editorial and advisory boards in biophysics and science policy.
Prof. Dr. Nils Kröger serves as Chair for "Biomimetic Materials" at the Technical University of Dresden, Germany, where he leads the Kröger Group dedicated to studying diatoms and their remarkable biological capabilities. His research program investigates two extraordinary phenomena exhibited by these microalgae: silica biomineralization and underwater adhesion. Academic Background: Diploma in Chemistry, University of Regensburg, Germany (1991) PhD in Biochemistry, University of Regensburg, Germany (1995) Habilitation in Biochemistry, University of Regensburg, Germany (2001) Assistant Professor, Georgia Institute of Technology, Atlanta, USA (2005) Associate Professor, Georgia Institute of Technology, Atlanta, USA (2011) W3 Professor for Biomimetic Materials, TU Dresden, Germany (2012) Professor Kröger's research sits at the intersection of biology, materials science, and nanotechnology. His group employs biochemical, molecular genetic, and cell biological approaches to unravel how diatoms construct intricate silica structures and adhere to surfaces underwater. This work has significant implications for developing novel bio-inspired materials and understanding fundamental biological processes. Recent advancements in his laboratory have revealed molecular mechanisms behind diatom motility and the precise control of silica pattern formation. Analysis of Professor Kröger's publication record shows consistent focus on diatom biology with increasing interdisciplinary collaboration. His recent work demonstrates sophisticated integration of physics, engineering, and biology to understand the mechanical aspects of diatom movement and structure formation. The research shows progression from basic protein characterization to complex systems-level understanding of diatom motility and morphogenesis. Current Research Funding: Deutsche Forschungsgemeinschaft (DFG): PoL Nucleation grant with Prof. Stefan Diez (2022-2025) - Acto-myosin cooperativity and regulation underlying diatom gliding motility Deutsche Forschungsgemeinschaft (DFG) (2018-2022) - Molecular basis of diatom adhesion and motility Previous funding from Air Force Office of Scientific Research (AFOSR) (2010-2016) - Molecular Mechanism of Diatom Adhesion Professor Kröger actively mentors PhD students and maintains a vibrant research group comprising senior scientists, postdoctoral researchers, technicians, and graduate students. His laboratory serves as a hub for interdisciplinary collaboration, bridging traditional boundaries between biology, chemistry, physics, and materials science. The group maintains strong international connections and participates in numerous collaborative research initiatives focused on biomineralization and bio-inspired materials.
Dr. Kathi Diel serves as an Akademische Rätin (Academic Councilor) at Saarland University, holding a tenured faculty position equivalent to Associate Professor in the Department of Psychology within the Faculty of Social Sciences. Her research profile demonstrates active engagement in both theoretical and applied psychological research with international collaborations spanning multiple continents. Dr. Diel's research focuses primarily on social comparison processes and their motivational consequences, with particular emphasis on how comparison direction (upward vs. downward) and extremity (moderate vs. extreme standards) influence goal pursuit behaviors. Her work reveals that upward comparisons enhance self-improvement motivation when standards are moderate and attainable, but lead to goal disengagement when standards are extreme. She has developed a comprehensive motivational framework that identifies three key response patterns to social comparisons: pushing (increased effort), coasting (reduced effort), and disengagement (giving up). More recently, Dr. Diel has expanded her research to environmental psychology, investigating how social comparison dynamics affect climate action behaviors. Her work reveals that people often engage in downward comparisons regarding environmental behavior to maintain positive moral self-images, which can lead to reduced effort in climate action (coasting). She explores interventions that might shift people toward more motivating upward comparisons in environmental contexts. Her publication record shows consistent high-impact output with numerous articles in top psychology journals including Journal of Personality and Social Psychology , Personality and Social Psychology Bulletin , and Journal of Environmental Psychology . Her recent work has increasingly focused on large-scale international collaborations, most notably the International Climate Psychology Collaboration spanning 63 countries, demonstrating her growing influence in global environmental psychology research. Dr. Diel collaborates extensively with prominent researchers including Wilhelm Hofmann, Martina Friese, and the international team behind the global climate intervention studies. Her research methodology combines experimental laboratory studies with real-world intervention approaches, demonstrating both theoretical rigor and practical application. Her work bridges fundamental social psychology with pressing contemporary issues, particularly climate change behavior. By applying social comparison theory to environmental contexts, she has created a novel research trajectory that addresses how people's perceptions of others' environmental behaviors influence their own climate action efforts.
Albert Esteve is a research professor in the Department of Sociology at the Autonomous University of Barcelona and serves as the director of the Center for Demographic Studies (Centre d'Estudis Demogràfics or CED). He also holds the position of Rector at the European Doctoral School of Demography. His research specializes in demography with particular focus on family structures, households, and macro-level demographic patterns through international comparisons. Esteve frequently utilizes survey and population census data in his work and has made significant contributions to the Integrated Public Use of Microdata Series (IPUMS) project's international version. Esteve's scholarly output demonstrates consistent productivity with publications spanning from 2006 to 2025, including multiple articles in 2024 and forthcoming publications in 2025. His research portfolio reveals several key thematic areas including fertility patterns (particularly in Spain and Latin America), household composition across different cultural contexts, marriage and cohabitation patterns, and the relationship between education and demographic behavior. He has conducted extensive comparative work across Europe, Latin America, East Asia, and Africa. Esteve has secured significant research funding from prestigious organizations including the European Research Council and the Government of Spain. His leadership roles at the Center for Demographic Studies and the European Doctoral School of Demography position him at the forefront of demographic research and education in Europe.
Prof. Dr. Heike Bungert is a leading scholar in North American History at the Westfälische Wilhelms-Universität Münster , focusing on ethnic migration, cultural history, and civil religion. Habilitation (2004) and Doctorate (1995) from German institutions Extensive teaching career since 2000, including visiting roles at UC Berkeley and Columbia University Her research bridges: German-American identity formation through festivals and cultural practices Transnational university history and academic networks Civil religion in US patriotic holidays Native American representation in film and collective memory Key article trends: 19th-20th century German migration patterns Academic institutions in transnational contexts Civil religion analysis in political rituals Historiography of indigenous peoples Scientific Honors : Heisenberg Fellowship (DFG, 2005) DAAD and DFG research fellowships Stuart L. Bernath Prize (1995) As a supervisor , she has guided doctoral research on topics like: Russian-American periodicals Symbolic communication in colonial legislatures Evangelical responses to immigration
Volker J Schmid is a Professor of Bayesian Imaging and Spatial Statistics at the Department of Statistics, Ludwig Maximilian University of Munich. He leads the Bayesian Imaging and Spatial Statistics group and contributes to interdisciplinary initiatives like the Munich Center of Machine Learning. His work bridges statistical theory with applications in medical imaging and biology. PhD in Statistics (2004), LMU Munich Diploma in Statistics (2000), LMU Munich Abitur, Joseph-von-Fraunhofer-Gymnasium Cham (1993) His research focuses on Bayesian computational methods for high-dimensional data, particularly in medical imaging (MRI, DCE-MRI) and biological microscopy (e.g., 3D nuclear architecture analysis via super-resolution microscopy). Key applications include disease mapping , image segmentation , and spatio-temporal modeling . His software tools (e.g., nucim , bioimagetools , BAMP ) enable quantitative analysis in nuclear imaging and age-period-cohort modeling. His 15 most recent publications span Bayesian modeling for medical imaging , spatio-temporal epidemiology , and computational biology . Topics include co-localization metrics in fluorescence microscopy, nuclear architecture analysis, and dynamic Bayesian frameworks for MRI data. Collaborations extend to neuroimaging, oncology, and nuclear biology.
Dr. Maja Matis is a Group Leader at the University of Muenster's Center for Molecular Biology of Inflammation (ZMBE) within the Institute of Cell Biology. Her research focuses on understanding the mechanical role of microtubules in tissue morphogenesis, particularly how microtubule-generated forces contribute to tissue remodeling through coordinated cellular behaviors. She leads the Matis Lab, which employs advanced microscopy techniques and genetic approaches to study cytoskeletal mechanics in developmental contexts. Key research areas include the structural regulation of microtubules, mechanics-driven cell shape changes, and integration of forces at adherens junctions. Her interdisciplinary projects combine biophysics, developmental biology, and quantitative imaging to unravel mechanisms underlying collective cell behavior during tissue formation. Notable contributions include studies on microtubule compression dynamics in epithelial tissues and the role of PCP signaling in patterning microtubule networks. She collaborates with institutions like the Cells in Motion Cluster of Excellence and has mentored multiple PhD/MD students. Her work is published in high-impact journals such as Nat. Commun. and Nat. Cell Biol.
Rita Finkbeiner is a Professor of German Linguistics at Johannes Gutenberg-Universität Mainz, where she has held a W3 professorship since April 2020 and served as managing director of the German Institute from 2022-2023. Previously, she was a W2 Professor at Heinrich-Heine-Universität Düsseldorf (2018-2020) and has been affiliated with Johannes Gutenberg-Universität Mainz since 2010. Her research focuses on the critical interface between grammatical structures and pragmatic functions in language use. Her academic background includes: Magistra Artium in German Linguistics and European Ethnology from Humboldt-Universität zu Berlin (2000) Ph.D. in German Linguistics from Stockholm University (2009) Habilitation at Johannes Gutenberg-Universität Mainz (2016) Professor Finkbeiner's research examines how linguistic constructions operate at the grammar-pragmatics interface, with particular attention to speech acts, implicit meaning, and expressivity in German. She investigates phenomena such as wh-headlines in newspapers, reduplicative constructions, expressive morphology, and the pragmatics of social media commenting. Her work bridges theoretical linguistics with practical applications in language teaching and media discourse, demonstrating how linguistic form and communicative function interact systematically. Analysis of her recent publications reveals a consistent focus on construction grammar and pragmatics, with increasing attention to digital communication patterns while maintaining strong theoretical foundations. Key trends include exploration of wh-headlines across discourse types, expressive morphology in German word formation, and the pragmatics of social media commenting, demonstrating both theoretical depth and practical relevance to contemporary communication contexts. Professor Finkbeiner actively supervises doctoral and master's students, with numerous successful completions including Julian Stawecki (2024) and Robert Külpmann (2019). She has led significant research projects including the DFG-funded "W-Überschriften im Deutschen" (2018-2022) on German wh-headlines, and is coordinating the development of a German linguistics textbook. She collaborates closely with researchers including Dr. Robert Külpmann, Dr. Paul Reszke, and Charlotte Eisenrauch. She leads a research team at Johannes Gutenberg-Universität Mainz that investigates construction grammar and pragmatics across various discourse contexts, with particular attention to digital communication and educational applications. Her work environment provides a strong interdisciplinary context connecting theoretical linguistics with language education and media studies.
Karin Jacobs is a Professor in the Department of Physics at Saarland University, where she leads the research group for soft matter physics within the Faculty of Natural Sciences and Technology. Her work bridges experimental physics and applied materials science, focusing on interfacial phenomena, thin films, and functional materials. Research Interests: Her group investigates the stability of coatings, properties of simple and complex fluids, and the adhesion of biomolecules on surfaces. Using advanced experimental techniques such as atomic force microscopy (AFM), ellipsometry, surface plasmon resonance spectroscopy, optical microscopy, and ultra-high vacuum (UHV) methods like photoelectron spectroscopy, her team probes nanoscale and microscale interactions at solid-liquid and solid-gas interfaces. The research spans fundamental and applied domains, including the synthesis and characterization of graphene and boronitrene, production of water-in-water vesicles using hydrophobins, and bacterial adhesion studies. These investigations are often linked to industrial applications in the paint, semiconductor, and biomedical sectors. Publication Trends: Over the past 15 years, her publications reflect a consistent focus on surface physics and soft matter. Key themes include graphene synthesis via liquid precursor deposition (including unconventional sources like fingerprints), interfacial rheology, biopolymer adsorption, and quantitative imaging analysis. The interdisciplinary nature of her work is evident in the combination of physics, chemistry, and biological interfaces. Scientific Awards: No specific awards are mentioned in the provided text. Advising and Grants: As head of an active research group, Prof. Jacobs supervises graduate students and postdoctoral researchers, though specific names are not listed. Her collaborations with theoretical groups and external institutions (e.g., University of Augsburg) suggest participation in joint grants and funded projects, particularly in nanomaterials and surface science. The applied orientation of her research indicates engagement with industry partners in coatings and semiconductor technologies. Labs and Teams: The Jacobs Group operates a well-equipped experimental laboratory at Campus E2 9, Saarland University, specializing in surface analysis and soft matter characterization. The team includes researchers working on biofilms, microfluidics, and functional materials, supported by technical and administrative staff.
Sebastian Willen is a Researcher at the Chair of Empirical Social Research at the University of Duisburg-Essen. He is affiliated with the working group of Prof. Dr. Stein and contributes to interdisciplinary projects like ATMo² and InnaMoRuhr , focusing on sustainable mobility and social dynamics. Research Interests include family sociology, transport sociology, dyadic modeling, and empirical methods. His work examines partnership negotiation in family expansion, mobility behavior transformation, and plagiarism dynamics through advanced statistical analysis. Recent Publications highlight family formation processes, sustainable urban mobility, and ethical decision-making. Articles span journals like Kölner Zeitschrift für Soziologie und Sozialpsychologie , Demographic Research , and edited volumes on mobility. His work integrates quantitative methods with theoretical frameworks in social research. Scientific Activities involve empirical social research, teaching advanced statistical analysis, and presenting at conferences such as the Wissenschaftsforum Mobilität . He has contributed to projects addressing mobility transitions and social inequality.
Prof. Michael Janoschka is a Professor of Regional Studies at the Karlsruhe Institute of Technology (KIT), leading the Institute of Regional Studies since June 2022. His work focuses on urban transformation, housing market dynamics, and participatory research methods. He holds a doctorate from Goethe University Frankfurt and has taught internationally in institutions including the University of Leeds, Universidad Autónoma de Madrid, and Universidad de Santiago de Chile. Research interests include financialization of housing markets, urban displacement processes, and governance innovations. He has conducted fieldwork across Latin America, Southern Europe, and German urban regions like Leipzig and Karlsruhe. Notable projects include CONTESTED_TERRITORY (EU-funded, 2025), CoprodAction (Ecuador urban co-production study), and the IECO Institute for Eco-Industrial Development (BMBF-funded). Publications span over 20 years, with key works on gentrification dynamics, post-crisis urban landscapes, and transnational real estate investment. His 2016 study Gentrification, displacement, dispossession established frameworks for understanding Latin American urban processes. Current research emphasizes spatial justice and the 'Right to the City' discourse. Education: Humboldt University of Berlin (undergraduate), Goethe University Frankfurt (PhD) Labs/Teams: Institute of Regional Studies research group, IECO eco-industrial development initiative Grants: Over €5M in EU and German federal funding since 2020
Barbara Drossel is a Full Professor at the Institute of Solid State Physics within the Faculty of Physics at the Technical University of Darmstadt, where she has been conducting research since February 2002. Her work bridges theoretical physics, complex systems theory, and theoretical ecology, focusing on interdisciplinary approaches to understanding emergent phenomena in natural systems. She leads the AG Drossel research group that investigates the theoretical foundations of complex networks, ecological communities, and quantum systems. Professor Drossel's research spans multiple domains with emphasis on complex systems theory, where she has made significant contributions to understanding random Boolean networks, food web modeling, and the physics of ecological communities. Her work demonstrates how simple rules can lead to complex emergent behavior across different scales, from quantum systems to ecological networks. She investigates how top-down causation operates in complex systems and explores the relationship between microscopic dynamics and macroscopic patterns in diverse contexts. Analysis of her recent publications reveals a consistent focus on theoretical frameworks that connect physics with ecology. Her work shows increasing integration of quantum mechanics with ecological modeling, particularly in understanding emergence and time evolution in complex systems. She frequently employs network theory to analyze ecological communities and has developed innovative approaches to studying species interactions, mutualistic networks, and spatial dynamics in meta-communities. Minerva Fellowship Heisenberg Fellowship DFG Fellowship for research at MIT Professor Drossel has supervised numerous doctoral students whose work spans theoretical ecology, complex systems, and statistical physics. Her research group has secured funding for projects examining the stability of ecological networks, quantum decoherence, and the mathematical foundations of complex systems. She maintains active collaborations with researchers across Europe and has contributed to major theoretical advances in understanding how complexity emerges from simple interactions in diverse systems. The AG Drossel research group operates at the intersection of physics and theoretical biology, maintaining strong connections with both the physics and biology departments at TU Darmstadt. The group combines mathematical rigor with biological relevance, developing models that capture essential features of complex natural systems while remaining analytically tractable. Their work has influenced both theoretical physics and ecological theory, demonstrating the power of interdisciplinary approaches to complex systems.
Dr. Yu Huang is an Assistant Professor in the Department of Computer Science at Vanderbilt University's School of Engineering, with a secondary appointment in the Department of Teaching and Learning at the Peabody School of Education. She is affiliated with the Institute for Software Integrated Systems, the Frist Center for Autism and Innovation, the Vanderbilt Lab for Immersive AI Translation (VALIANT), and the Vanderbilt LIVE Learning Innovation Incubator. Her academic journey began with a BS in Aerospace Engineering from Harbin Institute of Technology in China (2011), followed by an MS in Computer Engineering from the University of Virginia (2015), and culminated with a PhD in Computer Science and Engineering from the University of Michigan in 2021 under Professor Westley Weimer. Dr. Huang's research bridges human cognition and machine intelligence to enhance software development. Her work spans software, hardware, AI, medical imaging (fMRI/fNIRS), eye tracking, and mobile sensing through collaborations with Security, Education, Psychology, and Neuroscience researchers. She leads the MIND Lab (Mixed INtelligence Development for programming lab), investigating programming expertise formation, code comprehension processes, cognitive error patterns, and diversity in programming communities. Her innovative approach combines empirical human studies with AI model development to create more effective programming tools. Her recent publications reveal a growing emphasis on leveraging human attention data to improve code language models, analyzing cognitive biases in security contexts, and examining social factors in technical communication. The research shows strong interdisciplinary connections between neuroscience, psychology, and software engineering, with increasing applications of LLMs in developer tooling. Dr. Huang's work consistently demonstrates how understanding human cognition can inform better AI systems for programming tasks. Dr. Huang has received numerous prestigious recognitions including the 2025 ICPC Vaclav Rajlich Early Career Achievement Award and three ACM SIGSOFT Distinguished Paper Awards (ICSE 2019, FSE 2023, ICSE 2024). Her lab has earned the Best Presentation Award at GI2024, while her students have received the Richard Bennett/Dorothy Danforth Compton Prize scholarship and the C. F. Chen Best Paper award. She actively mentors a diverse team of graduate students (Yifan Zhang, Zach Karas, Zihan Fang, Yueke Zhang, Jiahao Zhang) and undergraduate researchers, with many former students advancing to top institutions (Stanford, Harvard, Duke, UC Berkeley) and organizations (NASA JPL). Her research is supported by a 4-year NSF grant, GitHub Tech for Social Good funding, and the Provost's Faculty Immersion Vanderbilt Grant, enabling comprehensive studies of human-AI collaboration in software engineering. The MIND Lab maintains a strong collaborative culture, frequently working with Professor Kevin Leach's research group and organizing retreats to locations like Radnor State Park and the Great Smoky Mountains. This environment fosters innovation at the intersection of human cognition and software engineering while supporting the professional development of emerging researchers in the field.