EduGrade AI, an educator-controlled assessment and feedback platform, has been selected for the Innovate UK ICURe Exploit Business and Spinout Readiness programme, following its successful completion of the ICURe Explore programme. The project is now progressing towards spinout formation through Queen Mary Innovation, marking an important step in taking the project beyond the university and toward
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Technology & InnovationQueen Mary University of London
Adobe freestock image Published in Nature Photonics , the international study introduces Clavina – a modular, programmable photonic quantum computing architecture capable of combining both linear and nonlinear quantum operations within a single system. The advance provides a practical blueprint for more powerful and adaptable quantum computers that could one day tackle problems beyond the reach of
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A new study by Queen Mary University of London mathematician Professor Ginestra Bianconi proposes a new perspective on one of the deepest questions in modern physics: how can the Universe become increasingly structured and complex while still obeying the second law of thermodynamics? Einstein famously stated that “The second law of thermodynamics occupies a unique position among the laws of Nature
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Environment & ClimateQueen Mary University of London
The four projects, funded by the Leverhulme Trust and Wellcome , span all areas of the University and cover topics ranging from healthcare and artificial intelligence to waste management, pollution and sustainable technology. Funded by the Leverhulme Trust, the first of these DTPS will train the next generation of researchers to tackle the global waste crisis through interdisciplinary research and
Medical ResearchEnvironment & ClimateTechnology & Innovation#Queen Mary University of London#QMUL Latest News#Humanities And Social Sciences#medical research#clinical research#climate#decarbonization#advanced materials
Developing safer solid-state batteries requires replacing flammable organic liquid electrolytes with solid-state electrolytes (SSEs) that can conduct ions well, remain stable, and have suitable mechanical properties. As interest in SSEs has grown, so has the volume of research in the field. However, the reported data remain scattered across the literature and vary widely in format and completeness
In a study published in Nature on August 19, a team led by Profs. ZENG Changgan and CHENG Guanghui from the University of Science and Technology of China of the Chinese Academy of Sciences, along with Prof. JIANG Qingdong from Shanghai Jiao Tong University, Prof. Frank Wilczek from Massachusetts Institute of Technology, and other collaborators, for the first time, have achieved the enhancement of
Technology & InnovationQuantum#Chinese Academy of Sciences#Research News#Quantum#advanced materials#innovation
Technology & InnovationNational Research Council of Science & Technology
- KIMS Develops Highly Durable Platinum–Nickel Catalyst for Water Electrolysis # Atomic-Structure Control Suppresses Nickel Dissolution, Enabling a Highly Durable Water Electrolysis Catalyst to Operate for 3,000 Hours # Extended Catalyst Lifetime Expected to Reduce Green Hydrogen Production Costs and Support the Commercialization of Water Electrolysis Systems CHANGWON, South Korea — Korea Institut
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Technology & InnovationLawrence Livermore National Laboratory
At the bottom of the ocean, optical fibers transmit telecommunications and internet data across the world. Waveguides make that feat possible by channeling and amplifying the light — and therefore the data within — over enormous distances. And the technology goes beyond undersea cables. Waveguiding optics are among the most important advances in photonics since the invention of the laser. They are fundamental to the structure of glass fiber lasers, which are used for high-power national security applications like counter-drone laser systems and missile defense. Now, researchers at
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An international research team has developed a new quantum-classical framework for computing quantum many-body structure and dynamics. The findings were published in Physical Review C . Ab initio many-body calculations serve as a fundamental tool for understanding strongly correlated quantum systems, with broad applications in quantum chemistry and nuclear physics. However, the Hilbert space of su
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Technology & InnovationChinese Academy of Sciences
Heavy-fermion superconductors have long served as a key playground for exploring unconventional superconductivity and quantum criticality—phenomena that emerge from the delicate competition between Kondo screening and RKKY magnetic ordering. In recent years, the discovery of two-dimensional van der Waals (vdW) heavy-fermion materials has opened fresh avenues for investigating how reduced dimension
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Kazuki Yamamoto, Lecturer, Graduate School of Science, Osaka Public University; Hamasaki, RIKEN Hakubi Research Team Leader, RIKEN Pioneering Research Institute (Senior Researcher, RIKEN Center for Creative Math)
Accurate pressure measurement under extreme conditions is essential for probing structural evolution and pressure-induced phenomena in condensed-matter physics and materials science. However, conventional optical manometers often require ultraviolet excitation and face challenges such as low pressure sensitivity, high UV laser costs, and spectral interference from background fluorescence. Now, a r
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A University of Michigan-led research team has been selected by the U.S. Department of Energy to advance a project that will use artificial intelligence to dramatically improve scientists' ability to observe how materials behave under stress and in extreme environments.
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Developing the materials needed for cleaner energy technologies has traditionally been a slow and expensive process, often relying on years of trial and error. Now, researchers have outlined a new artificial intelligence (AI)-powered framework that could dramatically accelerate the discovery of advanced energy materials while reducing development costs. Details were published in Digital Discovery
Researchers at the University of Michigan have created a device that enables them to control the flow of electrons through a semiconductor using only laser light—no electrical power source required.
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Technology & InnovationChinese Academy of Sciences
Ultra-high-definition organic light-emitting diode (OLED) displays demand emitters with extremely high color purity to satisfy the BT.2020 color gamut standard. Among the three primary colors, the development of narrowband pure-red emitters remains a challenge. Organic emitters simultaneously featuring an emission full width at half maximum (FWHM) below 0.1 eV and a CIE-x value above 0.67 (NTSC re
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Graphene has long been regarded as one of the most promising materials for future electronics, but its relatively weak electron interactions have limited its potential for applications such as high-temperature superconductors. Now, researchers from Tohoku University have overcome a major obstacle by creating a stable version of the long-sought "boron graphene" on the surface of a three-dimensional
A new regional facility to support advanced microfabrication activities across the region’s universities and high-tech industries is being established by Newcastle University.