Xingwang Li is an active researcher affiliated with the School of Physics and Electronic Information Engineering at Henan Polytechnic University in Jiaozuo, China. He obtained his PhD from Beijing University of Posts and Telecommunications in 2015, specializing in networking and switching technology. His research spans wireless communications, IoT systems, reconfigurable intelligent surfaces (RIS), and physical-layer security, with a strong focus on 6G-enabling technologies. Dr. Li's work primarily explores: Optimization of RIS-aided satellite-terrestrial networks Covert communication systems for enhanced security AI-driven signal processing for massive MIMO Integrated sensing and communication frameworks Energy-efficient protocols for IoT networks His recent publications (2023-2025) demonstrate a consistent focus on RIS applications, with 82% of works addressing reconfigurable surface optimization. Key trends include the integration of deep learning with communication systems (notably reinforcement learning for resource allocation), advancement of THz and near-field technologies for 6G, and novel approaches to physical-layer security. The research shows increasing emphasis on practical implementations, including UAV networks and autonomous vehicle communications.
Prof. Dr.-Ing. Elisabeth Clausen is a Professor and Director of the Chair and Institute for Advanced Mining Technologies at RWTH Aachen University. She holds key roles in the Specialist Group for Raw Materials and Disposal Technology, serves as a rectorate representative, and leads the Commission for EU Research Funding. Her research spans Underground mining automation Acoustic emission diagnostics Sustainable mining systems Space resource extraction Advanced sensor technologies Her recent publications focus on autonomous mining machinery, underground communication systems, and acoustic emission analysis across 15+ studies from 2013–2025, with particular emphasis on Ultra-wideband positioning Thermographic detection Crack monitoring in planetary gearboxes Explosive atmosphere safety Mineral processing diagnostics Digitalization trends Prof. Clausen contributes to mining education reform through initiatives like CDIO™ and has developed innovative learning spaces in underground mines. She coordinates international educational labs and integrates sustainability into mining engineering curricula, with publications on Adaptive ventilation systems Mining education frameworks Future-proof mineral extraction Entrepreneurial mindset in engineering
Maximilian Hilger is a doctoral researcher at the Chair of Perception for Intelligent Systems, part of the Munich Institute of Robotics and Machine Intelligence at Technische Universität München (TUM). He joined the chair in 2024 and specializes in radar perception for autonomous systems. M.Sc. in Automation Engineering (RWTH Aachen, 2023) Doctoral studies previously at AASS, Örebro University, Sweden His research focuses on radar-based localization, mapping, and introspection in challenging environments, with publications addressing 4D imaging radar SLAM, loop closure techniques, and sensor fusion methodologies. Recent work includes evaluating radar odometry algorithms and developing robust mapping systems using intensity-augmented normal distributions transform. Key research themes: Radar perception for autonomous systems SLAM robustness and introspection Occlusion-resistant localization Sensor fusion in dynamic environments He collaborates with team members including Prof. Achim Lilienthal, Valeria Salazar, and Thomas Wiedemann at TUM's Siemens Technology Center campus in Garching, Germany.
Prof. Dr.-Ing. Gerhard Müller is a Full Professor at the Chair of Structural Mechanics within the TUM School of Engineering and Design at Technical University of Munich (TUM). Since 2004, he has held this distinguished position, and since 2014, he has served as Executive Vice President for Academic and Student Affairs at TUM. His research focuses on structural dynamics and vibroacoustics, with specific expertise in dynamic soil-structure interaction, sound radiation analysis, and seismic risk assessment. Professorship: Structural Mechanics University: Technical University of Munich School: TUM School of Engineering and Design Department: Chair of Structural Mechanics in Civil Engineering Prof. Müller's research spans multiple domains, including: Structural Dynamics : Examining building and vehicle vibrations, seismic soil-structure interaction, and advanced model order reduction techniques Vibroacoustics : Investigating sound radiation from vibrating structures and developing acoustic metamaterials for noise control Computational Methods : Pioneering hybrid deterministic-statistical approaches, Wave Based Methods (WBM) for saturated elastodynamic structures, and parametric model order reduction His recent publications demonstrate expertise in: Wave propagation analysis in poroelastic media Bayesian parameter updating for structural models Acoustic metamaterials for vibration control Advanced numerical methods for seismic risk assessment Hybrid ITM-FEM approaches for soil-structure interaction Energy flow analysis in timber structures Awarded the Spindler Prize in 1984 , Prof. Müller also holds significant academic leadership roles: President of European Association for Structural Dynamics (EASD) Chairman of Bavarian-French University Center (BayFrance) Active member of ASIIN accreditation agency and Bavarian Chamber of Engineers Previously served as Dean of Civil Engineering and Surveying at TUM (2010-2014) He leads the Structural Dynamic Lab (formerly Vibroacoustics Lab) and has developed interactive web apps for engineering education. His work bridges theoretical advancements with practical applications in construction acoustics, transportation noise control, and geothermal energy infrastructure analysis.
Ron Peled is a Full Professor in the School of Mathematical Sciences at Tel Aviv University , currently on leave to serve as the Brin Professor in the Department of Mathematics at the University of Maryland starting summer 2024. During 2022–2024 he was a Member at Princeton University and the Institute for Advanced Study . Education & Career: While explicit degrees are not listed, his trajectory shows appointments at NYU (2009–2010), UC Berkeley and Tel Aviv University as a teaching assistant, followed by faculty positions culminating in full professorship. Research Interests: His work lies at the intersection of probability theory, statistical physics, and combinatorics . Key themes include: Disordered systems and random environments (random-field Ising, spin glasses) First-passage percolation and random metrics Random surfaces and height functions Loop models and critical phenomena Random matrices and band matrices Geometric probability and allocation problems Publications & Impact: With over 70 papers in top journals such as Annals of Mathematics , Annals of Probability , Inventiones Mathematicae , and Communications in Mathematical Physics , his recent work explores minimal surfaces in random environments, localization in random band matrices, and quantitative disorder effects in low-dimensional spin systems. Grants & Awards: Research has been continuously funded by: Israel Science Foundation (grants 1048/11, 861/15, 1971/19, 2340/23) ERC Starting Grant LocalOrder ERC Consolidator Grant Transitions Marie Skłodowska-Curie International Reintegration Grant SPTRF Teaching & Mentoring: Prof. Peled has taught a broad spectrum of courses at Tel Aviv University (Brownian motion, probability, percolation, random matrices, stochastic calculus) and NYU (combinatorics, discrete mathematics). He has supervised 13 post-doctoral fellows and 8 graduate students (PhD & MSc) to date. Service & Outreach: He co-organizes the Joint Israeli Probability Seminar and has organized numerous international workshops and conferences including at Oberwolfach, Technion, and Tel Aviv University.
Prof. Dr. Talja Blokland is a Professor of Urban and Regional Sociology at the Institute of Social Sciences within the Faculty of Cultural, Social and Educational Sciences at Humboldt University of Berlin. Based at Universitätsstraße 3b, Room 301, she actively contributes to urban sociological research and teaching, with contact via talja.blokland@sowi.hu-berlin.de. Her position as Women's* representative underscores her institutional engagement beyond academic duties. Bloklund's research centers on urban sociology, examining social inequality, neighborhood dynamics, social capital, public space, and urban diversity through qualitative and ethnographic lenses. She investigates how spatial arrangements shape social interactions, community formation, and exclusionary processes in cities like Berlin, Rotterdam, and São Paulo. Her work emphasizes the lived experiences of marginalized populations and the role of public spaces in mediating urban life, particularly in contexts of migration, segregation, and rapid urban transformation. Analysis of her recent publications reveals a dominant focus on 'urban impasses'—structural deadlocks where inequality becomes entrenched. Her scholarship consistently explores segregation mechanisms, social trust in public spaces, and the impact of policies like lockdowns on urban dwellers. Methodologically, she prioritizes ethnographic approaches to capture nuanced social realities, with recurring attention to Berlin's evolving urban landscape. Key thematic threads include the paradoxes of diversity, the spatial dimensions of social capital, and how marginalized groups navigate urban inequalities through everyday tactics.
Gianni Dal Maso is a Professor of Mathematical Analysis at the International School for Advanced Studies (SISSA) in Trieste, Italy. He has been a faculty member at SISSA since 1985, first as Associate Professor and then as Full Professor since 1987. He has held several leadership positions at SISSA including Head of the Sector of Functional Analysis and Applications (1993-1998, 2001-2010), Deputy Director (2010-2015), and Coordinator of the Mathematics Area (2016-2020). His educational background includes: 1973-1977: Undergraduate student in Mathematics at the University of Pisa and Scuola Normale Superiore 1977: Degree in Mathematics with honors at the University of Pisa (thesis: "Gamma-limits of set functions," advised by Ennio De Giorgi) 1977: "Diploma" in Mathematics from the Scuola Normale Superiore 1977-1981: Post-graduate Research Fellowship in Mathematics ("Perfezionamento") at the Scuola Normale Superiore Dal Maso's research focuses on the Calculus of Variations, with particular emphasis on semicontinuity and relaxation problems, Gamma-convergence, and more recently, free discontinuity problems and their applications to mechanics. His work bridges pure mathematical analysis with practical applications in material science, particularly in plasticity and fracture mechanics. He has developed mathematical frameworks for understanding crack propagation, material failure, and the behavior of solids under stress, contributing significantly to both theoretical foundations and practical modeling approaches in these areas. His extensive publication record shows a clear evolution from foundational work in Gamma-convergence (culminating in his influential book "An Introduction to Gamma-Convergence" in 1993) toward increasingly sophisticated models of material behavior, particularly in fracture mechanics and plasticity. Recent work demonstrates continued innovation in handling complex discontinuities, non-local effects, and multi-scale phenomena in material science applications. Among his notable scientific recognitions: 1982: Stampacchia Prize, awarded by the Scuola Normale Superiore 1990: Caccioppoli Prize, awarded by the Italian Mathematical Union 1996: Medaglia dei XL per la Matematica, awarded by the Accademia Nazionale delle Scienze detta dei XL 2003: Prize of the Minister for the Cultural Heritage for Mathematics and Mechanics, awarded by the Accademia Nazionale dei Lincei 2005: Prize Luigi and Wanda Amerio, awarded by the Istituto Lombardo Accademia di Scienze e Lettere Dal Maso has supervised 42 PhD students at SISSA, demonstrating a strong commitment to academic mentorship. His research has been significantly supported by multiple National Research Projects (PRIN) in Italy, and notably by an ERC Advanced Grant "Quasistatic and Dynamic Evolution Problems in Plasticity and Fracture" (QuaDynEvoPro) from 2012-2017, where he served as Principal Investigator. This major project focused on nonlinear evolution problems in plasticity and fracture, with three main research directions: plasticity with hardening and softening, quasistatic crack growth, and dynamic fracture mechanics. His scholarly activities extend to editorial service, with membership on the boards of numerous prestigious journals including Archive for Rational Mechanics and Analysis, SIAM Journal on Mathematical Analysis, and Journal of Convex Analysis. He has also been active in the mathematical community through membership in scientific committees and academies, including the Accademia Nazionale dei Lincei since 2014.
Anja Liekfeld serves as Adjunct Professor of Ophthalmic Optics/Optical Device Technology at Brandenburg University of Technology since 2018 while concurrently holding the position of Chief Physician at Klinikum Ernst von Bergmann's Department of Ophthalmology in Potsdam since 2009. Her dual roles bridge academic research in optical engineering with clinical ophthalmology practice, focusing on technological advancements for eye care delivery. Her educational foundation includes medical studies at Essen and Berlin Universities (1986-1992), state examination (1992), ophthalmology residency at Charité (1994-1997), specialist certification (1997), doctoral degree magna cum laude (1997), and habilitation on capsular bag models for cataract research (2007). Liekfeld's research centers on optical properties of intraocular lenses, clinical applications of medical devices in ophthalmology, refractive surgery techniques (laser and IOLs), cataract surgery technologies, glaucoma diagnostics/therapy, and gerontological ophthalmology. Her work emphasizes translating engineering principles into clinical solutions for complex vision correction challenges. Over 25 years of publications reveal evolving expertise from molecular glaucoma research to advanced IOL development. Recent work focuses on multifocal/toric lenses, dysphotopsia analysis, and visual outcomes measurement, demonstrating consistent innovation at the optics-clinical interface with practical applications for patient care. Her accolades include: DOG/SFO Travel Grant (2000) DGII Best Presentation Award (2008) DOC Gold Medal (2011) Focus Magazine Top Doctor (2013-2021) Stern Magazine Top Doctor (2022) As an educator, she trains surgical assistants, diet technicians, and operating room staff while teaching ophthalmology to visually impaired pedagogy students at Humboldt University. She conducts international wet labs for surgeons and optometrists, serves on editorial boards for Concept and Karger Kompass Ophthalmologie, and reviews for major ophthalmology journals. Active in professional societies including DGII, ESCRS, DOG, BBAG, and BDOC, she chairs Brandenburg's Ophthalmology Examination Board since 2021 and serves on the board of Die Augenchirurginnen e.V. Her research utilizes human capsular bag models for cataract studies and maintains focus on improving optical device performance in clinical settings.
Prof. Bernhard U. Seeber is an Extraordinary Professor at the Technical University of Munich (TUM), leading the Chair of Audio Signal Processing within the TUM School of Computation, Information and Technology. His work bridges auditory neuroscience and engineering, focusing on improving hearing aids, cochlear implants, and virtual acoustic systems. He holds affiliations with the Bernstein Center for Computational Neuroscience, Munich Institute of Biomedical Engineering, and others. Education: Studied and earned his PhD (2003) in Electrical Engineering and Information Technology at TUM. Postdoctoral research included time at UC Berkeley and the MRC Institute of Hearing Research (UK), where he pioneered studies on binaural hearing and cochlear implant optimization. Research Interests: Combines experimental and theoretical approaches to explore auditory scene analysis, binaural unmasking, and spatial hearing. Key areas include signal coding for cochlear implants, virtual acoustics, and non-destructive acoustic monitoring. His work emphasizes interdisciplinary collaboration with industry and academia. Awards: Lothar Cremer Award (2010), Emmy Noether Fellowship (2007), and recognition from the German Acoustical Society. Teaching: Offers courses on audio communication, computational neuroscience, and technical acoustics. Projects: Leads initiatives like HAPPAA and Auralization, advancing sound field synthesis and hearing aid algorithms. Current Roles: Head of Chair of Audio Signal Processing, Board Member of DEGA, and spokesperson for the ITG Technical Committee on Hearing Acoustics.
Prof. Dr. Sabrina Zajak serves as Head of the Consensus & Conflict Department at the Deutsches Zentrum für Integrations- und Migrationsforschung (DeZIM-Institut) and holds an adjunct professorship at the Faculty of Social Sciences, Ruhr University Bochum. A founding member of the Institute for Protest and Movement Research (ipb), she also serves on the board of Research Committee 47, 'Social Movements and Social Classes,' of the International Sociology Association. Her academic trajectory includes significant positions at Humboldt University Berlin, the Max Planck Institute for the Study of Societies Cologne, and the Social Science Center Berlin (WZB). Zajak's research centers on political sociology with dual emphases on consensus and conflict dynamics in plural societies. Her consensus research examines civil society engagement, refugee assistance networks, alliance formation, and everyday solidarity practices, while her conflict research analyzes protest movements, diversity challenges, and discrimination patterns. She has pioneered studies on transnational civil society alliances, particularly examining how social movements navigate national boundaries and build cross-border solidarity. Her recent publications reveal a decisive shift toward analyzing intersectional dynamics of race, migration, and social movements in European contexts. With significant attention to the Black Lives Matter movement's reception in Germany, her work demonstrates how global racial justice movements are adapted to local contexts. Her research increasingly addresses civil society responses to refugee crises, examining both supportive engagement and exclusionary practices, while also investigating structural barriers to diversity in German federal administration and cultural institutions. As a prolific academic leader, Zajak has served as (co-)editor for special journal issues including Development and Change (2017), Industrial Relations (2018), Social Movement Studies (2021), Competition and Change (2020), Moving the Social (2020), and European Cultural and Political Sociology (2022). Her department currently manages over 20 active research projects spanning discrimination experiences in Saxony, diversity in federal administration, Muslim youth association work, and violence protection in refugee accommodations, demonstrating the breadth and policy relevance of her research agenda.
Yen-Chi Chen is an Associate Professor in the Department of Statistics at the University of Washington. He also holds positions as a Data Science Fellow at the UW eScience Institute and as a co-investigator and statistician at the National Alzheimer's Coordinating Center. His academic career spans multiple interdisciplinary fields including statistics, data science, and astrostatistics. Chen's educational background includes a Ph.D. from Carnegie Mellon University, where he received prestigious awards including the Umesh K. Gavasakar Thesis Award (2017) and the William S. Dietrich II Presidential Ph.D. Fellowship Award (2015). His research focuses on nonparametric statistics, topological data analysis, missing data methodologies, cluster analysis, manifold learning, and applications in large-scale structure analysis and astrostatistics. Chen has made significant contributions to the development of statistical methods for analyzing cosmic web structures, GPS data, and causal inference with continuous treatments. His work bridges theoretical statistics with practical applications in astronomy, neuroscience, and public health. Analysis of his recent publications reveals a strong emphasis on developing novel statistical frameworks for complex data structures, particularly focusing on density-based methods, manifold learning, and approaches that address challenges in missing data and causal inference without standard assumptions. ASA Noether Early Career Scholar Award, American Statistical Association (2022) CAREER Award, National Science Foundation (2022-2027) Umesh K. Gavasakar Thesis Award, Carnegie Mellon University (2017) William S. Dietrich II Presidential Ph.D. Fellowship Award, Carnegie Mellon University (2015) Chen has advised numerous graduate students across multiple publications, with a focus on developing new statistical methodologies. His research has been supported by major funding agencies including the National Science Foundation and the National Institutes of Health. He is actively involved in several research groups including the UW Geometric Data Analysis Group, the UW Center for Statistics and the Social Sciences, and the National Alzheimer's Coordinating Center.
Professor Kristian Franze serves as Principal Investigator and Head of the Department of Neural Mechanics at the Max Planck Center for Physics and Medicine in Erlangen, Germany. He concurrently holds the position of Director of the Institute of Medical Physics and Microtissue Engineering at the Faculty of Medicine of Friedrich-Alexander University Erlangen-Nuremberg (FAU). His groundbreaking research explores how neurons integrate mechanical and chemical signals during development and regeneration processes of the central nervous system. The Franze laboratory employs an interdisciplinary approach combining physics and life sciences, utilizing advanced techniques including: Atomic force microscopy Traction force microscopy Custom-built compliant cell culture substrates Optical and confocal laser scanning microscopy Cell and molecular biology approaches Key discoveries from his lab include demonstrating that neural tissue is mechanically highly heterogeneous, that neurons constantly exert forces on their environment, and that both neurons and glial cells actively respond to mechanical stimuli. His work has revealed that local tissue mechanics directly guides growing neuronal axons and contributes to establishing the chemical landscape encountered by developing neurons. Professor Franze leads an international research team comprising doctoral students, postdoctoral fellows, and technical staff. His laboratory investigates how cellular forces, tissue compliance, and cellular mechanosensitivity contribute to CNS development and disease, with potential applications for treating neurological disorders where mechanical factors play crucial roles, such as foreign body reactions to implants and failed nerve regeneration after spinal cord injuries.
Florian Strunk is a Professor in the Department of Mathematics at the University of Regensburg, working within the Faculty of Mathematics. His office is located in room M219 (phone: +49 941 943 2768) and his contact email is florian.strunk@ur.de. Dr. Strunk's research spans several interconnected areas of modern mathematics, with primary focus on Algebraic Geometry, Arithmetic Geometry, and Homotopy Theory. He has developed specialized expertise in Algebraic K-Theory, Motivic Homotopy Theory, and Derived Algebraic Geometry. His scholarly work bridges classical algebraic geometry with contemporary homotopy-theoretic methodologies, advancing our understanding of structural properties of algebraic varieties and schemes. His publication record demonstrates consistent contributions to Algebraic K-Theory and motivic homotopy theory, with significant work on descent properties, connectivity in motivic contexts, and algebraic cycles. His collaborative research with prominent mathematicians like Moritz Kerz and Georg Tamme has appeared in top-tier journals including Inventiones Mathematicae and Compositio Mathematica. As an educator, Dr. Strunk teaches across the mathematics curriculum, from foundational undergraduate courses to advanced graduate seminars. His teaching portfolio includes Algebraic Geometry I and II, Mathematics of Machine Learning, Introduction to Quantum Computing Mathematics, and specialized seminars on Algebraic K-Theory. He has developed comprehensive lecture notes for several courses, reflecting his commitment to effective pedagogy.
Dr. Burkhard Maess is a Research Professor and Group Leader at the Max Planck Institute for Human Cognitive and Brain Sciences, leading the Methods and Development Group Brain Networks. His research focuses on auditory and language processing, signal analysis, and dynamic modeling of neuronal networks. He holds a Diploma in Physics (University of Leipzig, 1987) and a PhD in Physics (University of Leipzig, 1990). His career includes postdoctoral positions at the Academy of Sciences of the GDR and the Free University of Berlin before joining the MPI in 1995. Since 2000, he has led research groups on MEG/EEG signal analysis and cortical network dynamics. His work integrates advanced neuroimaging techniques like MEG and EEG to study sensory processing, neural network dynamics, and the effects of aging on auditory attention. Key contributions include developing high-resolution BEM-FMM methods for source localization and analyzing cross-frequency coupling in neuroscience data. His group also explores spinal cord electrophysiology and the neural underpinnings of perceptual decision-making. Dr. Maess’ research spans cognitive neuroscience, biomedical engineering, and computational modeling, with a focus on bridging empirical findings with theoretical frameworks in neuroscience.
Prof. Gert-Martin Greuel is a distinguished mathematician and Emeritus Professor at RPTU Kaiserslautern, where he previously held a Professorship in the Department of Mathematics. His career includes roles as Director of the Mathematisches Forschungsinstitut Oberwolfach (2002-2013) and as editor of major journals like Zentralblatt MATH. He co-founded the Singular computer algebra system and led the Center for Computer Algebra at Kaiserslautern. Research Interests: His work focuses on singularity theory, algebraic geometry, and computational algebra. Key contributions include foundational studies on hypersurface singularities, equisingularity, and the development of mathematical software tools like Singular and swMATH. Awards: Greuel received the Richard D. Jenks Prize (2004) for Singular, an honorary doctorate from Leibniz University Hannover (2009), and the German Mathematical Society's Media Prize (2013). He pioneered public math exhibitions through the IMAGINARY project. Leadership & Outreach: He served as Chair of European Research Centres on Mathematics (2010-2013) and championed open-access initiatives for mathematical software and publications. His editorial roles span Oberwolfach Reports, Revista Matemática Complutense, and Ergebnisse series. Education: PhD (1973) and Habilitation (1980) from University of Göttingen and Bonn, respectively. His academic journey includes professorships in Osnabrück and Kaiserslautern, and supervision of over 20 PhD students in algebraic geometry and computational mathematics.