Jonas Schou Neergaard-Nielsen is an Associate Professor in the Department of Physics at the Technical University of Denmark (DTU). His research focuses on quantum physics and information technology, with expertise in quantum optics, continuous-variable quantum information processing, and quantum sensing. Key research areas include: Generation and application of squeezed light states Quantum metrology and sensing enhancements Integrated photonic quantum systems Quantum computation with continuous variables Recent experimental work demonstrates advances in thin-film lithium niobate quantum light sources, long-distance quantum communication, and measurement-device-independent protocols. His publications frequently explore quantum state engineering, optical quantum technologies, and quantum-enhanced measurement techniques. Dr. Neergaard-Nielsen serves as Principal Investigator at DTU's Center for Quantum Technologies and Center for Macroscopic Quantum States.
Birgit Kjærside Storm is a Part-time Lecturer at AAU Energy within the Faculty of Engineering and Science at Aalborg University, Denmark. She is affiliated with the Energy Section in Esbjerg and contributes to applied research in materials science and sustainability. Institution: Aalborg University School: Faculty of Engineering and Science Department: Energy Section Position: Part-time Lecturer Email: bks@energy.aau.dk Her research focuses on polymer chemistry, surface treatment of materials, adhesive bonding, composite wear, and the environmental impact of plastics. She has worked extensively on coatings for wind turbine blades, recyclability of plastic materials, and analytical methods for polymer additives. Her interdisciplinary work bridges industrial manufacturing and environmental sustainability. Storm's publications from 2001 to 2017 reflect a consistent focus on practical materials engineering challenges. Key themes include life cycle assessment of plastic recyclates, durability of composite materials, surface treatments for improved adhesion, and environmental evaluation of polymer products. Her work often involves collaboration with industry, particularly in renewable energy and manufacturing sectors. She has contributed to 32 press and media appearances from 2019 to 2022, discussing topics such as plastic recycling, consumer responsibility, and sustainable material use, demonstrating strong public engagement. Overfladebehandling før limning (2011–2012) Udvikling af forbedrede overfladebelægninger til vindmøllevinger (2010–2012) Termoplastiske kompositter (2009–2010) Analysemetoder for additiver i polymere (2009–2011) Limning af aluminium (2009–2012) While no formal advising or grant leadership is documented, her project participation indicates collaborative research in applied materials science. She has not received any explicitly listed scientific awards. Storm is active in public discourse on plastic sustainability and continues to contribute to research and outreach as of 2022.
Marina Yovkova Linova is a Researcher (Tenure Track) in the Department of Chemical and Biochemical Engineering at the Technical University of Denmark (DTU), affiliated with the PROSYS - Process and Systems Engineering Centre. Her work focuses on advanced purification technologies for biopharmaceutical production systems. Her research centers on protein purification from yeast expression systems, specializing in host cell protein removal, multimodal chromatography membrane development, and continuous bioprocessing. Key methodologies include proteomic analysis of copurification phenomena and flow-through mode purification strategies for therapeutic proteins like monoclonal antibodies and single-chain variable fragments. Her work bridges biochemical engineering principles with industrial biopharmaceutical manufacturing challenges. Analysis of her publication record reveals a strong emphasis on membrane chromatography innovations and integrated continuous purification platforms, particularly for Pichia pastoris-derived biologics. Her research consistently addresses critical industry pain points including host cell protein contamination, yield optimization, and cost reduction in downstream processing. Scientific Awards: None mentioned in available sources. Dr. Linova serves as PhD supervisor for the recently completed project "In situ Protein Recovery from Yeast Fermentations" (2020-2024), collaborating with Prof. John Woodley and Prof. Manuel Pinelo. This project investigated novel protein recovery methods from yeast fermentations and received attention from news outlets and academic platforms with 16 Mendeley readers. She operates within DTU's PROSYS research center, collaborating with multidisciplinary teams on bioprocess engineering challenges. Her laboratory focuses on experimental development of purification strategies for therapeutic proteins, particularly optimizing membrane-based separation techniques for complex biologics.
Søren Wengel Mogensen is an Associate Professor at the Department of Finance, Copenhagen Business School, Denmark. His research focuses on developing advanced statistical and machine learning methodologies for complex systems analysis. Research Interests: Dr. Mogensen's work spans causal inference, stochastic processes, survival analysis, and time-series modeling. Key themes include: Causal discovery algorithms for industrial and biological systems Graphical representations of dependencies in high-dimensional data Time-varying mediation in survival contexts Bayesian networks for cascade modeling Publication Trends: His recent articles (2021-2025) demonstrate a strong emphasis on theoretical-statistical innovation with applications in healthcare, industrial monitoring, and computational finance. Dominant methodologies include kernel-based independence tests, continuous-time Bayesian networks, and constrained stochastic process modeling.
Nitin Jain is a Researcher at the Department of Physics Quantum Physics and Information Technology, Technical University of Denmark (DTU), based in Lyngby, Denmark. His work focuses on advancing quantum cryptography technologies, particularly in continuous-variable quantum key distribution (CVQKD) and quantum random number generation. Jain's research explores high-speed quantum communication systems, noise optimization in CVQKD, photonic-electronic integration for quantum receivers, and practical implementations of quantum encryption in network infrastructure. Key areas include Gaussian modulation techniques, long-distance fiber-optic QKD, and real-time cryptographic solutions. His recent publications (2024-2025) demonstrate a consistent focus on scaling quantum communication technologies: improving transmission speeds (up to 10 GBaud), extending operational distances (100+ km fiber), enhancing system robustness against noise, and developing integrated hardware for real-world deployment. Theoretical and experimental work converges on optimizing CVQKD for future-proof security applications. Jain collaborates extensively within DTU's Quantum Physics and Information Technology group, contributing to projects involving quantum receiver design, field testing of QKD systems, and cryptographic protocol development.
Stine Emilie Junker Udesen is a researcher at the University of Southern Denmark's Faculty of Health Sciences, affiliated with the Institute for Health Services Research. Her work focuses on emergency care integration within nursing homes, healthcare system optimization, and acute care delivery in geriatric populations. Master of Public Health Specialist Consultant in Clinical Pharmacology, Pharmacy, and Environmental Medicine Active in cross-sectoral healthcare research Her research explores: Emergency Department outreach to nursing homes Mobile acute care teams Interactions between primary and emergency healthcare systems Infection and delirium management in elderly care Workforce dynamics in nursing home emergency care Recent publications emphasize preventive strategies for older adults, novel acute care models, and policy implications for healthcare systems. She has presented findings at conferences in 2021 and contributes to open-access research in journals like The Lancet Healthy Longevity and Age and Ageing . Collaborates with experts in emergency medicine, nursing, and primary care Research outputs include 6 journal articles, 1 PhD thesis, and 1 conference abstract
Jeroen Bergmann serves as Head of Department in the Department of Technology and Innovation at the University of Southern Denmark (SDU). His research spans multiple interdisciplinary fields at the intersection of biomedical engineering, medical devices, and regulatory science. As department head, he leads academic initiatives focused on translating engineering innovations into practical healthcare solutions while navigating complex regulatory landscapes. Dr. Bergmann's research portfolio demonstrates expertise across several interconnected domains: Prosthetics and sensor technologies for medical applications Temperature monitoring and thermal behavior in biomedical contexts Medical device regulatory affairs and compliance frameworks Wearable biosensors and electronic skin technologies Sleep apnea diagnostics and home testing solutions Inertial measurement and position tracking systems Medical device software and AI applications in healthcare His work consistently bridges technical innovation with practical healthcare implementation, as evidenced by his fingerprint showing strong connections between engineering disciplines and clinical applications. Analysis of Dr. Bergmann's recent publications reveals a strategic dual trajectory: advancing biomedical sensing technologies while simultaneously developing frameworks for medical device regulation. His research shows increasing focus on AI-driven regulatory decision-making, particularly examining cross-jurisdictional compliance frameworks through approaches like RAG-based systems. Concurrently, his biomedical engineering work continues to refine oral cavity-based monitoring systems, temperature estimation methods, and sleep disorder diagnostics. The integration of physiological monitoring with environmental factors represents a novel approach in his recent work, suggesting movement toward more holistic health assessment systems that consider both internal and external variables. Dr. Bergmann's leadership role as Head of Department suggests significant administrative responsibilities alongside his research activities. His involvement in Health Innovation Day 2025 demonstrates engagement with broader healthcare innovation initiatives, while his international collaborations suggest a global research network. The department under his leadership appears to focus on technology innovation with direct healthcare applications, particularly in medical devices and regulatory science, positioning it at the critical intersection of engineering advancement and healthcare implementation.
Seyed Soheil Mansouri is an Associate Professor at the Department of Chemical and Biochemical Engineering, Technical University of Denmark. He holds a PhD (2016) and MSc (2013) from DTU. His expertise spans process design, bioprocess engineering, and quantum computing applications in chemical systems. He leads the KT Consortium PROSYS - Process and Systems Engineering Centre. Research focuses on sustainable biomanufacturing, data-driven modeling, and quantum computing for process optimization. Key areas include photobioreactor design, machine learning in biosystems, and hybrid quantum-classical algorithms. He has supervised 14 PhD projects and co-authored 182 publications. Awards include Best Contributed Paper (2018), Best Oral Presentation (2015), and multiple best presentation awards. Active in organizing workshops on quantum computing and biorefineries. Advises on modular manufacturing, bio-succinic acid production, and AI-driven process systems. Develops digital twin technologies for bio-manufacturing and promotes open innovation. His work aligns with UN Sustainable Development Goals, emphasizing education and sustainable industrial practices. Current projects explore quantum computing in bioprocesses and modular vaccine production units.
Julian Kager is an Assistant Professor at the Department of Chemical and Biochemical Engineering, Technical University of Denmark (DTU). He is affiliated with the PILOT PLANT research group. His research focuses on bioprocess and biosystems engineering, emphasizing the optimization and control of bioprocesses across pharmaceutical, industrial, and environmental biotechnology applications. He has expertise in experimental verification at lab and pilot scales, particularly in model development and real-time applications. Education: PhD in Bioprocess Engineering from Vienna University of Technology, Austria (2015–2019) MSc in Biotechnology from University of Natural Resources and Life Sciences, Vienna, Austria (2012–2015) MSc in Environmental Science from Florida A&M University, USA (2013) BSc in Biotechnology from University of Natural Resources and Life Sciences, Vienna, Austria (2008–2012) BSc in Biomedical Engineering from Universitá degli Studi di Milano, Italy (2010–2011) Research Interests: Julian's work centers on advancing bioprocess control and optimization through mechanistic modeling and real-time monitoring. He explores the integration of digital twins and AI tools in bioprocess development, aiming to enhance efficiency in pharmaceutical and industrial applications. His research also addresses challenges in raw material variability and process scalability, leveraging soft-sensor technologies and advanced control algorithms. Grants and Advising: Julian supervises multiple PhD students, including David Pfaff, Maksim Semenov Petrov, Ana Valdeira Caetano, Michael Lemperle, and Pratik Pably. His projects span topics like model-based control of bioprocesses, digital quality by design, and bioprocess intensification. He has held external positions as a Senior Researcher at Competence Center CHASE GmbH and a Postdoctoral Research Associate at Vienna University of Technology. Labs and Teams: Julian is part of the PILOT PLANT research group at DTU, which focuses on pilot-scale bioprocess development and digitalization. His work contributes to UN Sustainable Development Goals related to affordable and clean energy, industry innovation, and climate action.
Bin Yang is a Professor at the Department of Computer Science, Aalborg University, affiliated with The Technical Faculty of IT and Design. His research focuses on data engineering, artificial intelligence, and machine learning, with emphasis on spatiotemporal data analysis, representation learning, and time series forecasting. He leads projects like aSTEP (spatio-temporal data analytics) and Light-AI for Cognitive Power Electronics. Key contributions include advancements in trajectory data processing, anomaly detection, and lightweight neural architectures. Research interests span machine learning, data mining, intelligent transport systems, and material science applications. Notable awards include the IJCAI 2019 Distinguished PC Member and Sapere Aude Research Leader (2018). He has supervised six PhD students and contributed to over 119 publications. His work is supported by grants from Villum Foundation and EU initiatives. Yang is involved in interdisciplinary collaborations, including data-driven decision-making frameworks and environmental monitoring systems. Labs and teams include the Daisy Center for Data-intensive Systems and AI for the People initiatives. Projects emphasize real-world applications in smart cities, traffic forecasting, and sustainable technologies. His research bridges theoretical foundations with practical implementations in domains like oceanography and crowdsourcing systems.
Albert Schliesser is a Professor at the Niels Bohr Institute, University of Copenhagen, where he leads research in Quantum Optics and Photonics within the Faculty of Science. His work focuses on quantum optomechanical systems, particularly membrane-based devices operating at the quantum limit. He maintains an active research program with over 76 publications, primarily in high-impact journals including Nature, Physical Review Letters, and Optica. Professor Schliesser's research centers on quantum optomechanics, with specific expertise in cavity optomechanical systems , quantum measurement techniques , and quantum information processing using mechanical resonators . His group develops advanced optomechanical platforms including membrane-in-the-middle systems, soft-clamped membranes, and optomechanical crystals. Recent work demonstrates breakthroughs in quantum squeezing , ground-state cooling , and quantum memory for light , pushing the boundaries of quantum control in macroscopic mechanical systems. His research bridges fundamental quantum physics with potential applications in quantum sensing and quantum information technologies. His publication record shows consistent output in top journals, with recent work (2023-2025) focusing on quantum squeezing techniques, topological phononics, quantum memory implementation, and advanced optomechanical transducers. The research demonstrates strong international collaboration, with publications featuring co-authors from multiple countries and institutions. His work has generated significant attention, with several papers picked up by major news outlets and widely shared on academic social networks. Professor Schliesser leads the SLab research group (https://slab.nbi.dk), which specializes in experimental quantum optomechanics. The group operates advanced cryogenic and optical setups for studying mechanical systems at the quantum limit, with particular emphasis on membrane-based platforms that operate from room temperature to milliKelvin environments. Current research directions include quantum-enhanced sensing, quantum state engineering of mechanical oscillators, and developing optomechanical interfaces for quantum networks.
Huy Quang Nguyen is a Postdoctoral Researcher in the Department of Physics at the Technical University of Denmark (DTU), specializing in quantum information processing with a focus on squeezed light technologies. His work bridges theoretical quantum optics and experimental implementations for secure communication systems, operating within DTU's Quantum Physics and Information Technology research environment. Nguyen's research centers on overcoming practical barriers in quantum cryptography, particularly through continuous-variable quantum key distribution (CV-QKD). He pioneers solutions for free-running local oscillators, digital signal processing integration, and chip-scale squeezed light sources using thin-film lithium niobate platforms. His innovations target real-world deployment of quantum-secured networks by addressing synchronization challenges and hardware limitations in existing quantum communication infrastructures. Analysis of his 2024-2025 publications reveals a cohesive research trajectory focused on making squeezed-light-based quantum communication commercially viable. Key advancements include digital reconstruction techniques for quantum states, integrated photonic implementations, and noise-resilient protocols for telecom networks. His work consistently merges quantum optical engineering with information theory to enhance system robustness. Nguyen has not received major scientific awards according to available records. As a recent PhD graduate transitioning to postdoctoral work, he has not yet assumed formal advising roles but contributed significantly as the principal investigator in his doctoral project. He operates within DTU Physics' Quantum Optics Laboratory under Professor Tobias Gehring's supervision, utilizing advanced experimental setups for generating non-classical light states. Current efforts focus on developing field-deployable quantum communication systems through industry-academia collaborations and European research initiatives.
Adnan Adil Ebrahim Hajomer is an active Researcher in the Department of Physics at the Technical University of Denmark (DTU), specializing in quantum information technology. His work focuses on cutting-edge quantum communication systems with institutional affiliation at Fysikvej 307, 2800 Kgs. Lyngby, Denmark. His research interests center on quantum key distribution , particularly continuous-variable systems and squeezed light applications . Key areas include quantum cryptography implementation over optical fibers, high-speed quantum networking, and measurement-device-independent protocols. His fingerprint analysis reveals dominant contributions to Continuous Variable (100%), Quantum Key Distribution (71%), and Squeezed Light (35%) research domains. Analysis of his 17 publications shows consistent focus on practical quantum communication deployment, with recent work emphasizing integrated photonic receivers, finite-size security, and passive optical network architectures. His 2024-2025 publications demonstrate strong collaboration with Ulrik L. Andersen and Tobias Gehring at DTU. No scientific awards or student advisement information is currently documented in available sources. His research appears centered in quantum optics laboratories with emphasis on experimental quantum communication systems development.
Mette Krabsmark Borbjerg is a Research Fellow at Aalborg University Hospital and the Department of Health Science and Technology at Aalborg University, affiliated with the Faculty of Medicine. She works within the Translational Pain Neuroscience and Precision Health research group, focusing on diabetic neuropathic pain and corneal nerve changes. Primary Affiliation: Aalborg University Hospital Academic Department: Department of Health Science and Technology Research Institution: Steno Diabetes Center North Denmark Her research concentrates on the intersection of diabetes and neuropathic pain, particularly examining corneal nerve alterations as potential biomarkers. Key areas include diabetic neuropathy , neurovascular coupling , histamine-induced flare response , peripheral nerve function , confocal microscopy , and precision diagnostics . She has contributed to methodological advancements in nerve excitability testing and pain phenotyping. Between 2022-2025, she published 15 major works spanning diabetic neuropathy diagnostics , corneal nerve imaging , microcirculatory assessments , and quality of life analyses . Her output includes 6 journal articles in 2025 , 4 in 2024 , and 3 in 2023 , demonstrating consistent contributions to translational pain research.
Ulrik Pedersen-Bjergaard is a Clinical Professor of Endocrinology at the Department of Clinical Medicine, Faculty of Health and Medical Sciences, University of Copenhagen. He is also a Chief Physician at the Department of Endocrinology and Nephrology, Nordsjællands University Hospital Hillerød. His dual appointment reflects his integration of clinical practice and academic research in endocrinology and diabetes care. Medical Doctor (MD), University of Copenhagen, 1986 Certified Specialist in Internal Medicine, 1996 Certified Specialist in Endocrinology, 2006 Doctor of Medical Science (DMSc), University of Copenhagen, 2009 Dr. Pedersen-Bjergaard’s research focuses on glucose control in diabetes, particularly hypoglycaemia, insulin therapy, and diabetes technology such as continuous glucose monitoring (CGM) and automated insulin delivery (AID). He has pioneered work in hypoglycaemia awareness classification and genetic risk factors. His clinical expertise includes type 1 and type 2 diabetes, acute diabetology, and inpatient diabetes management. His recent publications highlight trends in hospital-based diabetes care, cardiovascular effects of hypoglycaemia, and digital health tools. Studies emphasize the benefits of CGM in non-ICU settings, insulin titration algorithms, and systematic reviews of monitoring technologies. His work is increasingly collaborative, involving large consortia like Hypo-RESOLVE and MELISSA under EU funding programs. Scientific contributions include: Principal investigator in clinical trials sponsored by AstraZeneca, Bayer, Novo Nordisk Member of advisory boards for Novo Nordisk and Sanofi Speaker and consultant for multiple pharmaceutical companies Associate Editor, Diabetologia (since 2020) Reviewer for journals including JAMA, The Lancet, and Diabetes Care He has supervised over 18 PhD projects and mentored postdoctoral researchers. His research is funded by the Novo Nordisk Foundation, EU Horizon 2020 and Horizon Europe, and the Research Foundation of Nordsjællands Hospital. He leads the Endocrine Research Unit at Nordsjællands Hospital and collaborates internationally on diabetes outcomes and technology.