Peter A. Dowben is a Professor in the Department of Physics and Astronomy at the University of Nebraska–Lincoln , with a research focus spanning Condensed Matter Physics , Materials Science , and Spintronics . His work emphasizes surface physics , electronic structure , and magnetoelectric coupling , particularly in transition metal compounds , ferroelectric polymers , and graphene-based systems . Key research trends in his recent publications include voltage-controlled spin states for memory applications, magnetoelectric transistors , and interfacial effects in nanoscale materials . His collaborations extend across institutions like the Air Force Institute of Technology and the Institute of Physical Optics, with experimental techniques such as X-ray absorption spectroscopy and photoemission . While no specific awards are documented in the provided texts, his extensive publication record and interdisciplinary work on molecular spintronics , surface segregation , and band structure engineering highlight his contributions to fundamental material science and applied physics . He has advised teams in studies involving spin crossover complexes , self-assembled monolayers , and magnetoelectric heterostructures .
Keith Obadike is a Professor in the Department of Art at Cornell University's College of Architecture, Art, and Planning (AAP), where he also serves as Director of Undergraduate Studies. He is an acclaimed interdisciplinary artist and composer, known for his collaborative work with Mendi Obadike, which spans sound art, digital media, public installations, performance, and internet-based projects. His artistic and academic work critically engages with technology, race, history, and identity. Obadike earned a B.A. in Visual Art from North Carolina Central University and an M.F.A. in Sound Design from Yale University. Prior to joining Cornell, he taught at William Paterson University and held visiting positions at Princeton University, Columbia University, Northwestern University, and the Art Institute of Chicago. His research and creative practice focus on sound art, digital media, public art, performance, and collaborative practice , with strong interdisciplinary connections to Afrofuturism, data sonification, and social justice. He explores how sound and technology mediate racial identity, memory, and liberation, notably through the concept of acousmatic blackness , which he and Mendi developed to describe the racial perception of sound when its source is unseen. Obadike’s selected works include large-scale public sound installations such as Blues Speaker (for James Baldwin) , Free/Phase , Compass Song (Times Square Arts), and GuideStar (Space Needle, Seattle). His projects often use data sonification, archival research, and mythic storytelling, blending historical inquiry with futuristic vision. Notable series include the Opera-Masquerades , Americana Suites , and Numbers Station works, which transform databases of violence into sonic experiences. His honors include: Rockefeller New Media Arts Fellowship (2004) Louis Comfort Tiffany Biennial Award (2015) New York Foundation for the Arts Fellowship in Fiction New Music USA Creator Development Fund (2022) Obadike has received commissions and support from institutions such as the Vera List Center, Harlem Stage, Times Square Arts, the American Composers Orchestra, and the Cornell Mui Ho Center for Cities. He has exhibited and performed at The New Museum, The Whitney Museum of American Art, MoMA, and The Studio Museum in Harlem. His writings and publications include contributions to Studies into Darkness (2022), and artist books such as Four Electric Ghosts and Big House / Disclosure (both 2014). He has also released albums like Crosstalk (2008) and created internet artworks such as Blackness for Sale (2001) and The Interaction of Coloreds (2002), which are foundational in new media and critical race art. While specific advisees are not listed, his role as Director of Undergraduate Studies and Professor indicates active mentorship. His work is deeply collaborative, often co-created with Mendi Obadike, and supported by interdisciplinary teams and institutions.
Lin Yang is an Assistant Professor in the Electrical and Computer Engineering Department at the University of California, Los Angeles (UCLA). His research focuses on reinforcement learning theory and applications, learning for control, non-convex optimization, and streaming algorithms. Education: PhD in Computer Science and PhD in Physics & Astronomy - Johns Hopkins University (simultaneously) Bachelor's degree in Math and Physics - Tsinghua University Research Interests: His work spans reinforcement learning theory and its applications, particularly in learning for control systems. He also investigates non-convex optimization techniques and streaming algorithms for efficient data processing. Scientific Awards: Dean Robert H. Roy Fellowship - Johns Hopkins University Previous Positions: Before joining UCLA, he was a postdoc at Princeton University working with Professor Mengdi Wang.
Dr. Anna Baldycheva is a Senior Lecturer in Electronic Engineering at the University of Exeter, within the College of Engineering, Mathematics and Physical Sciences. She leads the interdisciplinary STEMM Laboratory, focusing on applied R&D in smart materials, photonics, AI, and IoT. With prior research experience at MIT, Trinity College Dublin, and Tyndall National Institute, she has established herself as an internationally recognized innovator and entrepreneur in emerging technologies. PhD in Electronic and Electrical Engineering, Trinity College Dublin (2008–2012) BSc (Hons) in Physics, St. Petersburg State University (2003–2008) Postgraduate Certificate in Academic Practice, University of Exeter (2016–2017) Postgraduate Certificate in Technology Management, Smurfit Business School (2009–2010) Her research spans Nano-Engineering, Opto-Electronics, Photonics, AI, and IoT , with a strong emphasis on real-world applications. She pioneers work in fluid opto-electronics , graphene nanocoatings , and AI-driven emotion recognition and early cancer detection . Her lab develops smart composite materials for flexible electronics, e-textiles, and structural applications, integrating machine learning into healthcare, education, and communications systems. The recent publications highlight a strong trend toward applied interdisciplinary innovation , combining materials science with AI and photonics for healthcare diagnostics, energy-efficient computing, and educational technology. Her work frequently bridges fundamental physics with commercialization potential, as seen in spin-out technologies like GSurf and the Electronic-Nose for lung cancer detection. Fellow, Royal Microscopical Society (RMS) Fellow, Higher Education Academy (FHEA) Expert, Future and Emerging Technologies, European Commission Featured in Forbes and Forbes Tech Council Editor-in-Chief, InSTEMM Journal Associate Editor, Nature Scientific Reports and Discover Nano Trustee, Royal Microscopical Society Founder, STEMM Global Scientific Society Founder, It’s Her! Women in STEMM Initiative Dr. Baldycheva actively supervises PhD students and has secured industrial collaborations with organizations such as Qinetiq and Lumentum. She leads multiple outreach initiatives, including STEMM Junior for underprivileged children, and serves on the committee for the Jocelyn Bell Brunel PhD Scholarship. She has raised significant research funding through national and international grants, though specific grant names are not listed. She leads the STEMM Laboratory , a multidisciplinary research group with divisions in Smart Composite Materials, Machine Learning & AI, and Opto-Electronics & Photonics. The lab emphasizes industry collaboration and technology transfer, having produced a university spin-out (GSurf) and multiple media-highlighted innovations.
Paul R. Genssler is a Dr.-Ing. researcher at the Chair of AI Processor Design (AI-Pro) within the Technical University of Munich (TUM), actively advancing hardware solutions for artificial intelligence under Prof. Hussam Amrouch. His work bridges computer engineering and emerging technologies, focusing on overcoming fundamental limitations in conventional computing architectures through brain-inspired paradigms. His research spans critical domains in next-generation computing: Hyperdimensional Computing for robust pattern recognition and bioinformatics applications Neuromorphic and In-Memory Computing architectures for energy efficiency Reliability engineering for emerging memory technologies (FeFET, etc.) Quantum computing support systems including cryogenic embedded electronics Machine learning-driven transistor aging prediction and mitigation Analysis of his 15 most recent publications (2023-2024) reveals a dominant trend toward hyperdimensional computing as a unifying framework for addressing reliability challenges in emerging technologies. His work consistently integrates in-memory computing techniques to bypass von Neumann bottlenecks while targeting real-world applications like genome matching and unsupervised learning. A significant portion focuses on error-resilient implementations for unreliable nanoscale devices, demonstrating exceptional cross-stack expertise from transistor physics to algorithm design. As a core member of TUM's AI Processor Design group affiliated with the Munich Institute of Robotics and Machine Intelligence (MIRMI), Genssler collaborates extensively on projects spanning cryogenic quantum control systems, FPGA-based AI resilience, and monolithic 3D integration. The team operates at the intersection of semiconductor physics, computer architecture, and machine learning, with strong industry connections evident through publications at DATE, ASP-DAC, and ICCAD.
Murali Mani is a Professor in the Department of Computer Science, Engineering, and Physics at the College of Innovation and Technology, University of Michigan-Flint. He is actively involved in teaching courses such as Database Design (CSC 384, CSC 584) and Independent Graduate Study in Computer Science (CSC 591), and serves as Principal Investigator on multiple research grants focused on computing education and data science. His research interests span database systems, data provenance, generative AI for data augmentation, computing education, and the societal impact of technology . He has developed educational tools including epidemiology calculators and market basket analysis modules to support interdisciplinary learning. His work emphasizes integrating computing skills across disciplines such as health sciences and management. The 15 most recent scholarly contributions reflect a strong focus on data management, AI-augmented data curation, educational technology, and the cognitive aspects of learning programming. These publications appear in venues such as VLDB, IEEE FIE, and ACM conferences, with several under review or in preparation for top-tier journals like Communications of the ACM and the VLDB Journal. Scientific Awards: No awards explicitly mentioned in the provided text. Advising and Grants: Murali Mani actively mentors students through independent graduate studies and collaborative research projects. He has secured funding from the National Science Foundation (SGER grant on provenance metadata) and internal university sources, including the CIT/CHS Joint Grant and the Office of Research at UM-Flint, supporting projects on civic literacy, computational skills integration, and AI for social science data archiving. Labs and Teams: While no formal lab name is mentioned, Murali Mani leads a research group focused on data systems and computing education, collaborating with colleagues across departments and institutions. He contributes to initiatives such as the Michigan Institute for Data & AI in Society (MIDAS) and the Academic Data Science Alliance (ADSA), and has presented at conferences including IASSIST, FIE, and ICCTAC.
Erika Tan is a Reader in Contemporary Art Practice and Course Leader of MA Fine Art at Central Saint Martins, University of the Arts London. With a multidisciplinary background spanning social anthropology, archaeology, and film directing, her research-led practice investigates postcolonial narratives, transnational identities, and decolonial methodologies through moving image, archival interventions, and curatorial projects. Education includes: M.A Fine Art - Central Saint Martins (1997) B.A (Hons) Social Anthropology and Archaeology - University of Cambridge (1991) Advanced Diploma in Film & Video - Central Saint Martins (1995) Film Directing - Beijing Film Academy (1994) Her research focuses on three primary domains: postcolonial museum practices examining colonial collections and restitution; transnational material histories exploring cultural exchange and identity formation; and decolonial methodologies challenging canonical art histories through archival reexamination. Current projects include SOAS-led research on Southeast Asian restitution paradigms and AHRC-funded work on decolonizing national collections through machine learning applications. Publication trends reveal sustained engagement with archival reinterpretation, particularly through the recurring 'Forgotten Weaver' project examining Malayan craft histories. Recent works demonstrate increased focus on participatory sound installations (e.g., Sonic Soundings ) and feminist knowledge-sharing frameworks like Slideshow Party developed for Singapore Biennale 2023. Significant recognitions include: Arts Foundation Digital Arts Fellowship (1998) ACME 5-year Fire Station Residency (2001) Samsung Digital Art Plus Prize Nomination (2012) Stanley Picker Fine Art Fellowship (2018-2020) As Research Associate with UAL's Decolonising Arts Institute, she contributes to major grants including the AHRC's 'Transforming Collections' initiative. She leads the Moving Image research group and has curated geo-locational projects like Sonic Soundings across international contexts.
Axel Hoffmann is a Professor of Materials Science and Engineering at the University of Illinois at Urbana-Champaign , where he has been since 2019. His research focuses on magnetism , spin transport , magnetic heterostructures , and quantum materials . He has published extensively on topics including skyrmions , spin-orbit torques , and magnonics . Education: PhD in Physics (University of California-San Diego, 1999); Diplom in Physics (RWTH Aachen, 1994) Professional History: Postdoctoral Fellow (Los Alamos National Laboratory, 1999-2001); Staff Scientist to Senior Group Leader (Argonne National Laboratory, 2001-2019) His scientific awards include being a Highly Cited Researcher (2019-2023), Fellow of the American Physical Society, IEEE, and American Vacuum Society, and the David Adler Lectureship Award (2022). Notable research trends from his publications include advancements in antiferromagnetic spintronics , skyrmion dynamics , and hybrid magnonic systems . Editorial Roles: Associate Editor, Journal of Applied Physics (2009-present).
Chongyi Feng is Associate Professor in China Studies at the University of Technology Sydney (UTS) and adjunct Professor of History at Nankai University, Tianjin. He served as head of China Studies at UTS for 11 years from 1995-2006. As China's first holder of PhD in contemporary Chinese history, he brings unique expertise to his position within the Faculty of Design and Society's Social and Political Sciences department. Dr. Feng's research focuses on intellectual and political development in modern and contemporary China, political economy of China's provinces, and the growth of rights consciousness and democratic forces leading to constitutional democracy. His work explores the intellectual and political changes within China, particularly examining the evolution of democratic thought and practice. His scholarship bridges historical analysis with contemporary political developments, providing critical insights into China's political trajectory. His recent publications demonstrate a consistent focus on Chinese political development, democracy movements, and the CCP's internal dynamics, with particular attention to the challenges of authoritarian resilience and democratic transition. His work also critically examines China's international relations, particularly the methods of Chinese 'soft power' projection in democratic societies like Australia. Named one of the hundred Chinese public intellectuals in the world since 2005 Author of numerous influential books including 'China's Constitutional Transformation' (2014) and 'Liberalism within the CCP' (2009) Editor of significant collections including 'The Political Economy of China's Provinces' (1999) Recipient of multiple ARC research grants focusing on Chinese democracy and political development Dr. Feng has actively engaged with media and public discourse, particularly regarding China-Australia relations and human rights issues. His personal experience being detained by Chinese officials in March 2020 for ten days while conducting research on Chinese human rights lawyers has informed his critical perspective on Chinese state power and its international reach.
Elise van den Hoven holds dual academic appointments as Associate Professor in the Future Everyday cluster of the Industrial Design department at Eindhoven University of Technology (TU/e) and Full Professor in the School of Software, Faculty of Engineering and Information Technology at University of Technology Sydney (UTS), Australia. She maintains additional honorary positions as senior research fellow at Duncan of Jordanstone College of Art & Design, University of Dundee and associate investigator with the Australian Research Council's Centre of Excellence in Cognition and its Disorders. Her educational background includes: MSc in Biology (1998) from Utrecht University, specializing in perception research MTD degree (now PDEng) in Human-Computer Interaction from Eindhoven University of Technology PhD in Human-Computer Interaction from Eindhoven University of Technology (2004) Dr. van den Hoven's research program centers on human-computer interaction, tangible interfaces, and memory support systems , with her internationally recognized Materialising Memories (MM) program serving as her flagship research initiative. She approaches Interaction Design as "a wonderful opportunity to first imagine and then create new interactive products, inspired by the needs and desires of people in their everyday lives." Her work uniquely bridges the gap between digital technology and human experience, particularly examining how physical and digital artifacts function as memory cues in everyday contexts. Analysis of her publication record reveals a clear research trajectory from foundational work on gesture interaction with physical artifacts toward increasingly sophisticated systems that support personal memory through hybrid digital-physical interfaces. Her scholarship consistently integrates perspectives from computer science, psychology, and design disciplines, creating a distinctive interdisciplinary approach to memory and interaction. Her notable scientific achievements include: Best long paper award (2016) NWO Vidi Award for "The design of improved recollections of personal memories" (2011-2018) Dr. van den Hoven has secured significant research funding through competitive mechanisms, most notably the VIDI fellowship that enabled the Materialising Memories program. Her research program involves substantial international collaboration between TU/e, UTS, and University of Dundee, reflecting her global research impact and network. She leads the Materialising Memories international research consortium, which brings together multidisciplinary expertise to investigate how design can support human remembering activities through tangible and interactive systems in real-world contexts.
Cindy Lee Van Dover is a deep-sea biologist and the Harvey W Smith Distinguished Professor of Biological Oceanography at Duke University. She serves as Chair of Duke's Division of Marine Science and Conservation and Director of the Duke University Marine Laboratory in Beaufort, N.C. Her research focuses on chemosynthetic ecosystems, biodiversity, and deep-sea policy frameworks. Ph.D. in Biological Oceanography, MIT/Woods Hole Oceanographic Institution (1989) M.A. in Ecology, UCLA (1985) B.S. in Biological Oceanography, Rutgers University (1977) Van Dover's work spans deep-sea ecology, hydrothermal vent biodiversity, and environmental policy. She investigates gene flow in vent invertebrates, ecological impacts of deep-sea mining, and conservation strategies for chemosynthetic ecosystems. Her research integrates field programs using submersibles and telepresence technologies to study vent connectivity and microbial roles in extreme environments. Her scientific leadership includes 80+ peer-reviewed publications and roles as Chief Scientist in NSF- and NOAA-sponsored expeditions. She pioneered studies on geothermal light at vents and deep-sea symbiosis, with recent work on dual symbiotic relationships in vent snails and methane seep ecology. Virginia Outstanding Scientist (2006) Fulbright Scholar (France 2004) Fellow, American Association for the Advancement of Science Mines Medal for Leadership and Innovation NSF Career Awardee Van Dover's grants include NSF EAGER funding for deep-submergence science leadership and Pew Charitable Trusts' support for deep-sea mining impact assessments. She leads interdisciplinary initiatives like Science and Art at the Moment of Discovery , integrating artists into marine research expeditions. Her outreach includes authoring two books: Deep-Ocean Journeys for public audiences and The Ecology of Deep-Sea Hydrothermal Vents as the first textbook in the field. Her work has been featured in Science News , Discover Magazine , and National Public Radio .
Dr. Sara Kijewski is a Lecturer at ETH Zurich's Department of Humanities, Social and Political Sciences (D-GESS), specializing in the Ethics and Governance of Artificial Intelligence, Digital Health, and Health Policy. She joined ETH in 2022 after earning her PhD in Political Science from the University of Bern, with additional studies at the University of North Carolina, University of Oslo, and University of Zurich. Her research focuses on AI ethics frameworks, digital health governance, and the societal impacts of war through projects like the Health Ethics & Policy Lab's Health Data and AI course coordination and postdoctoral work on NRP 77 (Digital Health Innovation Governance). As Director of Operations for the ETH AI Ethics and Policy Network, she bridges academic and policy dimensions of emerging technologies. Key research interests include global AI governance, healthcare innovation ethics, and the long-term social consequences of conflict, reflected in publications analyzing post-war societies, public opinion on biotechnology, and international health policy challenges. Her academic background includes multilingual proficiency (Norwegian/Finnish native, German/English fluent), supporting cross-cultural research collaboration. Professional activities include undergraduate course coordination, internship supervision, and contributions to interdisciplinary initiatives like Precise4Q: Predictive Modelling in Stroke. Current academic roles combine teaching (e.g., Ethics Workshop: The Impact of Digital Life on Society in Autumn 2025) with research leadership in AI ethics and health policy domains.
Morten Søndergaard is an Associate Professor at Aalborg University’s Department of Communication and Psychology, affiliated with the Faculty of Social Sciences and Humanities. He is part of the Art, Aesthetics & Health Research Laboratory and the MASSHINE initiative. His research focuses on sound art, media art curation, and transdisciplinary practices, emphasizing the exclusion mechanisms in 20th-century art systems and unarchived avant-garde movements. Søndergaard has curated exhibitions globally, including at Kiasma and ZKM, and co-founded the POM conference series and ISACS symposia. He leads the Erasmus Master of Excellence in Media Arts Cultures, collaborating with institutions in Austria, Poland, and Hong Kong. His work bridges art, science, and technology, with recent projects exploring sonic archives and participatory curatorial frameworks. Key collaborations include roles with the European NeMe network, SUNY College New York, and the Momentum Biennial. He has organized over 20 projects since 2008, including the 2025 Momentum Biennial as head curator. His teaching spans media art theory, sound art practices, and curatorial methodologies at both bachelor and master levels. Søndergaard’s research outputs include over 145 publications, with a focus on sound art’s theoretical and practical dimensions. His current projects emphasize ‘uncurating’ methodologies and the reactivation of marginalized avant-garde practices. Notable activities include editorial roles, international conference organization, and advisory roles in art and science networks. His work has been featured in media outlets like Artdaily and the Biennial Foundation, highlighting his contributions to contemporary art discourse and curatorial innovation.
Trevor E. Carlson is an Assistant Professor at the School of Computing, National University of Singapore (NUS), focusing on high-efficiency microarchitectures, hardware/software co-design, and secure chip design for IoT and server applications. He earned his Ph.D. in Computer Science from Ghent University (2014) and B.Sc./M.Sc. in Electrical & Computer Engineering from Carnegie Mellon University (2002/2003). Research Interests include energy-efficient processors, secure computing platforms, neuromorphic accelerators, and fast simulation methodologies. He co-developed the Sniper Multi-Core Simulator used globally for performance/power evaluation. Scientific Awards : Best Paper Award, International Conference on Embedded Computer Systems (2016) Best Paper Award, International Symposium on Performance Analysis of Systems and Software (2013) Heidelberg Laureate Forum participation (2015) HiPEAC Technology Transfer Award for Sniper Simulator (2013) Current Research involves secure Systems-on-Chip (SOCure project), hardware security for IoT, and simulation methodologies. He leads a lab with researchers working on topics like Capstone for trustless secure memory access and LABS for laser fault injection benchmarks.
Amalia Miliou is a Professor in the Department of Informatics at Aristotle University of Thessaloniki, where she has served since 1993, progressing through the academic ranks from Lecturer to her current position as Professor since 2022. She holds a PhD in Electrical and Computer Engineering from the University of Florida (1991) with specialization in Optoelectronics, following an MSc in the same field (1988) and a Physics degree from Aristotle University (1985). Her research focuses on optical communications systems, with specific expertise in optoelectronic circuits simulation, optical switching, optical RAM development, converged fiber-wireless technology, 5G networks, and secure optical communications using chaos theory. Over her career, she has supervised numerous graduate students across these research areas, with thesis topics spanning optical memory systems, fiber-wireless integration, chaos-based secure communications, and advanced optical network architectures. Her recent publications (2021-2024) demonstrate a strong focus on next-generation optical networking solutions for 5G/6G applications, including fiber-wireless convergence, optical memory systems for high-speed networks, and innovative approaches to optical signal processing. Her work bridges fundamental photonics research with practical telecommunications applications, particularly in addressing the bandwidth and latency challenges of modern mobile networks. Professor Miliou has served as the Coordinator of the LLP-ERASMUS student exchange program at the Department of Informatics since 1997 and has held various administrative positions including membership in the University Senate and General Assembly. She has led and participated in numerous research projects, most recently focusing on technological improvements for 5G systems through optical-wireless network development (2019-2021), next-generation healthcare applications leveraging 6G networks (2023-2027), and photonic integrated circuits for random access memory (2012-2015).