Alberto Lluch Lafuente is a Professor in the Department of Applied Mathematics and Computer Science at the Technical University of Denmark (DTU). He leads research in formal methods, cybersecurity, and software systems engineering. His work emphasizes model checking, blockchain protocols, and security risk modeling. He has supervised multiple PhD students and serves as Editor-in-Chief of the Journal of Logical and Algebraic Methods in Programming . Research interests include formal verification, attack-defense trees, distributed systems, and quantitative analysis of adaptive systems. Recent efforts focus on process mining for security analysis, liquidity-saving protocols in DeFi, and human-centered AI in software engineering. Key Projects: IoT security risk modeling, formal analysis of DeFi protocols, reduction techniques for biological systems Tools Developed: ERODE (Boolean network reduction), QFLan (quantitative analysis tool) His interdisciplinary work bridges theoretical computer science with practical applications in finance, cybersecurity, and distributed systems.
Heine Anton Hansen is an Associate Professor in the Department of Energy Conversion and Storage at Technical University of Denmark (DTU). His research focuses on atomic-scale materials modeling with emphasis on electrochemical processes, particularly in CO2 reduction, oxygen reduction reactions, and catalyst design. He contributes to UN Sustainable Development Goals related to affordable and clean energy (SDG7) and climate action (SDG13). His work employs advanced computational methods like Density Functional Theory (DFT) and molecular dynamics simulations to study electrode-electrolyte interfaces and catalytic mechanisms. Hansen collaborates internationally on topics including hydride materials discovery and machine learning-driven materials design. Supervises 5 current PhD projects on topics ranging from magnetic catalysis to hydrogen peroxide production Active in conferences presenting on CO2 activation mechanisms and electrochemical interface modeling Develops open-access datasets for CO2 reduction studies Key research themes include optimizing electrocatalysts for renewable energy systems and understanding cation effects in electrochemical reactions.
Jan Karlshøj is an Associate Professor in the Department of Civil and Mechanical Engineering at the Technical University of Denmark (DTU). With over 20 years of experience in consulting engineering and research, he specializes in Building Information Modeling (BIM), interoperability, and sustainable construction solutions. His work bridges academic research with industry standards, contributing to international organizations like buildingSMART and ISO. Education: MBA, DTU Business (2018–2020) Ph.D., Technical University of Denmark (1989–1994) MSc., Technical University of Denmark (1983–1988) Research Interests: Dr. Karlshøj focuses on BIM implementation, interoperability standards, and holistic design strategies. His work emphasizes sustainable construction practices and the integration of digital technologies like OpenBIM and process modeling. He actively contributes to standardization efforts, including ISO and buildingSMART frameworks. Publications: His recent work includes critical overviews of BIM best practices, analyses of building lifecycle models, and studies on OpenBIM adoption. These publications highlight trends in digitalization, interoperability challenges, and the integration of BIM with sustainability goals. Awards: buildingSMART Fellow (2017) Advising & Grants: Dr. Karlshøj supervises multiple PhD students, including those exploring digital twins, green construction, and fire safety design. He leads projects funded by initiatives like the Interreg program and collaborates on international standards for BIM and construction processes. Labs/Teams: His research aligns with DTU’s focus on Digital Building Technologies, emphasizing interdisciplinary collaboration between engineering, IT, and sustainability disciplines.
Frederik Nathan is an Assistant Professor at the Quantum Information Science & Technology department of the Niels Bohr Institute , University of Copenhagen. His research focuses on topological quantum systems, Floquet engineering, and dissipative quantum technologies. He explores the interface between quantum optics, condensed matter physics, and quantum computing through experimental and theoretical approaches. Key topics include GKP qubit stabilization, topological frequency conversion in graphene and Weyl semimetals, and non-equilibrium quantum dynamics. His work bridges fundamental quantum phenomena with practical applications in quantum information processing. Notable contributions include studies on self-correcting quantum states in superconducting circuits and quantized transport in Floquet topological insulators. Nathan collaborates actively in cross-disciplinary projects involving quantum materials and photonics. Publications emphasize novel methodologies for preparing and maintaining quantum states under controlled dissipation, with applications to error-corrected qubits and energy pumps. His research also advances theoretical frameworks for understanding quantum speed limits and topological bounds in driven systems.
Hien Thi Thu Nguyen serves as a Guest Researcher and Clinical Academic at Aalborg University Hospital's Faculty of Medicine within the Department of Molecular Diagnostics. Her research spans metabolomics, biomarker discovery, and clinical diagnostics with significant contributions to hepatitis research, cancer prognostics, and physiological response studies. Her primary research interests focus on Metabolomics and Biomarker Discovery , particularly in viral hepatitis progression, gynecological cancers, and physiological responses to prolonged gaming. Her work integrates NMR spectroscopy, metabolic profiling, and clinical validation to develop diagnostic and prognostic tools. Recent projects examine biochemical changes during gaming sessions, metabolic signatures in COVID-19 progression, and biomarkers for early liver cancer detection. Her publication trends reveal a strong emphasis on clinical metabolomics with applications in infectious disease monitoring (particularly hepatitis B/C and COVID-19), cancer diagnostics, and physiological response studies. The research consistently applies advanced analytical techniques to identify metabolic biomarkers for disease progression and treatment outcomes, with increasing focus on computational modeling and machine learning approaches in recent years. Dr. Nguyen actively leads and participates in multiple research projects including EU-funded pandemic response initiatives, NMR spectroscopy applications for gynecological cancers, and metabolic profiling of hepatitis-related liver diseases. Her collaborative network spans clinical departments, research institutions, and international partnerships focused on translating metabolomic findings into clinical practice.
Constant Pieters serves as an Assistant Professor of Marketing within the Department of Marketing at Copenhagen Business School. Previously, he held a Lecturer position in Marketing at Tilburg University. His academic credentials from Tilburg University include: Ph.D. in Marketing (2020) Research MSc. in Business: Marketing (2014) MSc. in Marketing Research (2012) BSc. in Business Administration (2011) Pieters specializes in quantitative marketing methodologies with primary focus areas in latent variable modeling, non-linear regression, and construct validation. His research bridges advanced statistical techniques with substantive applications in marketing strategy and consumer behavior, emphasizing methodological rigor and practical implementation. Publication trends reveal sustained contributions to methodological advancement, particularly in latent moderation analysis and non-linear relationship modeling. His work appears in premier outlets including Journal of Marketing Research and Strategic Management Journal, demonstrating significant influence on quantitative research practices within marketing and strategy disciplines. As an educator, Pieters coordinates and delivers fundamental and applied courses in quantitative marketing research and analytics. He actively supervises MSc. thesis projects with strong preference for ambitious quantitative and mixed-methods approaches that achieve high academic quality.
Tiantian Liu is an Assistant Professor in the Department of Computer Science at Aalborg University's Technical Faculty of IT and Design. Their research focuses on indoor location-based services, trajectory analysis, and spatial data management. Key areas include indoor navigation algorithms, temporal-variation-aware path queries, and uncertainty-aware contact tracing systems. Education details are not explicitly provided in the text. The researcher has collaborated on the Data Management Foundations for Indoor LBS project (2019-2021), contributing to foundational work in indoor spatial databases. Research interests span computer science , data management , and spatial computing . Notable contributions include keyword-aware routing systems (IKAROS), robust trajectory similarity computation (CLEAR), and time-constrained indoor pathfinding frameworks. Their work integrates machine learning, database systems, and algorithmic design to address challenges in indoor environments. In 2021, Liu co-authored the SSTD 2021 Best Paper Candidate . Their research emphasizes practical applications such as crowd-aware path planning and uncertainty modeling in indoor positioning data. Current work explores continuous similarity search for vessel trajectories (2025) and novel methods for handling temporal variations in indoor environments. The researcher's lab focuses on intelligent building systems and context-aware spatial analytics.
Luca Breseghello is a Researcher in the Department of Engineering Technology and Didactics Building Technology and Processes at the Technical University of Denmark (DTU). His work focuses on sustainable construction techniques, particularly 3D concrete printing, life cycle assessment, and biobased materials. He contributes to UN Sustainable Development Goals related to affordable and clean energy, climate action, and sustainable cities and communities. Breseghello leads and participates in projects like Print2build, which explores sustainable pathways for large-scale 3D concrete printing. He has delivered guest lectures on topics including computational design, additive manufacturing in construction, and life cycle assessments for 3D-printed concrete structures. His research emphasizes environmental impact reduction through innovative material and design processes. His publications span 2015–2025, with a focus on environmental and structural analyses of 3D-printed concrete components, biobased material applications, and robotic fabrication workflows. Over 20 peer-reviewed articles and conference contributions highlight his expertise in sustainable construction technologies.
Victor Lund is an Associate Professor at the Department of Engineering Technology and Didactics, Technical University of Denmark (DTU). His research focuses on bioeconomy, circular systems, and sustainable innovation, contributing to UN Sustainable Development Goals. He leads and participates in projects like Power Bio (2023-2026) and InnoTech TaskForce (2023-2025), emphasizing bio-based value chains and open innovation. Key research interests include material performance, high-value product development, and environmental impact assessment. He has published on topics such as seaweed waste utilization and entrepreneurial competencies in engineering education. His work bridges academia and industry, addressing challenges in supply chain sustainability and partnership validation. Victor collaborates internationally on projects like BB2 (2019-2022), focusing on sustainable development strategies. He actively engages in conferences and lectures, promoting green transition initiatives. His contributions span technical reports, books, and peer-reviewed articles, reflecting a commitment to advancing sustainable technologies and educational practices.
Jesper Molin is an Associate Professor at the Department of Engineering Technology and Didactics Building Technology and Processes at Technical University of Denmark (DTU). His work focuses on sustainable building practices, indoor climate systems, and urban water management. He holds a Diplom Ingeniør from Københavns Teknikum (1987-1990), Energy Consultant certification (1997-1998), and DGNB consultant qualification (2014-2015). Research interests include green roofs, rainwater management systems, and IoT-based monitoring. He leads projects like Green Roofs 4.0 (2022-2024) and The Green Downspout (2021-2022). His innovations involve laboratory testing for sustainable building solutions and user-involving energy efficiency strategies. Teaching activities cover technical installations, building energy balances, and DGNB sustainability standards. Selected projects include renovations of large residential complexes and educational facilities, emphasizing energy efficiency and indoor climate optimization. Technical competencies include project management for HVAC systems, building inspections, and consultation for public/private construction projects. Fluent in English and conversational in Spanish, German, and French.
Michael A. E. Andersen is a Professor and Head of Section in the Department of Electrical and Photonics Engineering at the Technical University of Denmark (DTU). His work focuses on power electronics with applications in electric power supplies, switch mode techniques, and audio amplifiers. He teaches courses at all levels in power electronics and supervises student projects including special courses, mid-term projects, thesis projects, and PhD research. Dr. Andersen's research interests center on power electronics, with specific expertise in DC-to-DC converters, boost converters, power supply design, power density optimization, and switching frequency techniques. His work contributes to UN Sustainable Development Goals related to sustainable energy and technology innovation. His research fingerprint shows strong activity in areas like DC-to-DC conversion (100%), boost converters (75%), power supply engineering (70%), and experimental power electronics (70%). His recent publications demonstrate a clear trend toward high-efficiency power conversion systems, particularly for datacenter applications, LED drivers, and wireless power transfer. The research focuses on improving power density, reducing losses, and developing novel control schemes for various converter topologies. Many papers explore partial power processing techniques to achieve efficiencies above 99% while maintaining high power density. AEG Elektronprisen (2004) 2013 IEEE ECCE Asia Downunder First Prize Paper A. R. Angelo's Grant (1990) Best Poster Prize UPEC '91 (1991) Best Presentation Award at WiPDA-Asia 2021 Multiple recognition for Power Factor Converter research Several awards related to High Efficiency Audio Power Amplifiers Professor Andersen actively supervises multiple PhD students including Andresen, J. on High-Efficiency Converters for Next-Gen HPC, Guglielmino, S. on battery cell impedance spectroscopy, and Wolstrup, A. F. on flexible and printable electronics. He serves on numerous review committees including for the Cyprus Agency of Quality Assurance and Accreditation in Higher Education, Prince Sattam Bin Abdulaziz University, and the Chilean National Commission for Scientific and Technological Research. His research contributes to sustainable energy solutions aligned with UN Sustainable Development Goals. His work involves multiple research groups focused on power electronics design, high-efficiency converters, and wireless power transfer systems. The research environment includes advanced laboratories for power converter testing, magnetic component analysis, and high-frequency circuit development. Current projects emphasize next-generation power conversion technologies for datacenters, portable devices, and industrial applications with a strong focus on efficiency and power density improvements.
Peter Glarborg is a Professor in the Department of Chemical and Biochemical Engineering at the Technical University of Denmark (DTU). He is actively involved with the CHEC Research Centre and maintains a strong research presence in combustion chemistry and related fields. His work spans multiple research projects and collaborations, with recent activities including supervision of PhD students working on topics such as multi-component fuel oxidation, waste-to-energy NOx control, and phosphorus chemistry in thermal conversion of waste. Gl Professor Glarborg's research focuses on high temperature chemistry, chemical kinetic modeling, combustion processes, and harmful emission control. His work contributes significantly to addressing UN Sustainable Development Goals related to clean energy and environmental protection. His fingerprint analysis shows strong expertise in flow reactor engineering, kinetic modeling, methane chemistry, low-temperature processes, pyrolysis, and ignition phenomena. His recent publications demonstrate a continued focus on advancing fundamental understanding of combustion chemistry while addressing practical environmental challenges. His scientific contributions span numerous publications including 304 journal articles, 42 conference proceedings, 31 reports, and various other research outputs totaling 446 publications. His research has been cited extensively, with some publications accumulating over 100 citations. Glarborg is particularly active in the areas of nitrogen chemistry, biomass conversion, and emission control technologies. Research expertise spans high temperature chemistry, chemical kinetic modeling, and combustion processes Active contributor to UN Sustainable Development Goals related to clean energy and environmental protection Specializes in flow reactor engineering, kinetic modeling, and methane chemistry Focuses on practical applications for emission control and sustainable energy solutions Professor Glarborg actively supervises PhD students and collaborates on multiple research projects. His current supervision includes projects on multi-component fuel oxidation, waste-to-energy NOx control, oxyfuel combustion in cement plants, and phosphorus chemistry in thermal conversion of waste. His collaborative network extends internationally, with research activities spanning multiple countries and institutions. Glarborg is also involved in the CHEC Research Centre, a long-term project that has been active since 1986, focusing on harmful emissions research with applications in emission control and international cooperation.
Tim Felle Olsen is a Research Fellow in the Department of Civil and Mechanical Engineering at the Technical University of Denmark (DTU), specializing in computational structural design through topology optimization and additive manufacturing methodologies. His research expertise spans: Microstructure engineering Stream surface applications Structural performance analysis Additive manufacturing processes Multiscale modeling Frame field theory Recent publications (2022-2024) reveal a concentrated focus on de-homogenization techniques using stream surfaces and frame field-aligned multi-laminar structures, demonstrating significant advances in computational efficiency for complex engineering designs. His work bridges theoretical computational geometry with practical structural engineering applications, particularly in lightweight infill structures and manufacturing-ready topologies. He actively contributes to the Center of Excellence for Exascale CFD (2023-2026) as a project participant, advancing large-scale optimization for computational fluid dynamics. Previously, he completed his PhD research on "Irregular Grid Topology Optimization" (2019-2022) under supervision of leading experts including Niels Aage and Ole Sigmund. No scientific awards or student advisement activities are documented in the current profile.
David R. Fuhrman is a Professor of Coastal Dynamics at the Technical University of Denmark (DTU), Department of Civil and Mechanical Engineering. His research focuses on coastal engineering, including sediment transport, turbulence modeling, and wave hydrodynamics. He has published over 150 peer-reviewed articles and contributed to the development of OpenFOAM's turbulence models. He serves on editorial boards for journals such as Coastal Engineering and Applied Ocean Research. Education: PhD in Mechanical Engineering, Technical University of Denmark (2004) MSc in Hydroinformatics, UNESCO-IHE, Delft (2001) BSc in Civil Engineering, University of Idaho (1999) Research Interests: Sediment transport and coastal morphology Turbulence modeling and computational fluid dynamics Wave boundary layers and nonlinear wave dynamics Microplastic transport in coastal environments His work addresses UN Sustainable Development Goals related to clean water and sustainable infrastructure. Publications: Over 150 articles, with recent contributions focusing on probabilistic wave modeling, microplastic dynamics, and turbulence closure models. Awards: ASCE Outstanding Reviewer Award (2015) DTU Teaching Prize (2018) Coastal Engineering Journal Citation Award (2021) Advising & Grants: Supervised 11 PhD students, 6 postdocs, and 42 MSc projects. Led projects like MPCOAST (microplastic transport) and SUBSEA (CFD modeling of breaking waves). Labs/Teams: Active in DTU’s Fluid Mechanics group, collaborating internationally on coastal dynamics and CFD applications.
Finn T. Agerkvist is an Associate Professor and Acoustic Technology Group Leader at the Department of Electrical and Photonics Engineering, Technical University of Denmark. His research focuses on loudspeaker dynamics, nonlinear effects in acoustic systems, material optimization for transducers, and sound field control in multichannel systems. He contributes to UN Sustainable Development Goals through acoustic innovation. Research interests include the internal mechanics of loudspeakers, cabinet design optimization, and application-driven studies in sound field control. Recent work explores magnetic-vibroacoustic coupling in balanced armature receivers and active noise control methods for outdoor events. Recent publications emphasize structural vibration modeling, boundary layer effects on acoustic propagation, and optimization techniques for low-frequency noise reduction. His projects involve collaborations on acoustic array processing, room acoustics, and material-based loudspeaker design. Supervised PhD students include A. A. Figueroa Durán, Pietro Libianchi, and David G. Nielsen. Advising spans 24 projects, including funded initiatives on sound field analysis and microphone array processing. His work integrates finite element modeling, experimental validation, and environmental acoustics to advance acoustic technology applications. Labs and teams: Active contributor to the Acoustic Technology Group at DTU, focusing on experimental and computational acoustics.