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Lehigh University


130,000 years of data show peatlands store carbon long-term

A new study reveals that peatlands have been a significant carbon sink over the past 130,000 years, storing carbon in their deposits and potentially slowing down climate change. The research, published in PNAS, fills a key knowledge gap about the global extent of peatlands and their role in the carbon cycle.

SourceLehigh University·JournalProceedings of the National Academy of Sciences·DateFeb 25, 2019

Laser-fabricated crystals in glass are ferroelectric

A team of researchers has demonstrated that laser-generated crystals in glass can be manipulated to control their ferroelectric domain structure. This allows for the creation of new optical devices with high efficiency and low loss links, crucial for future quantum information transfer systems.

SourceLehigh University·JournalMRS Communications·DateJan 29, 2019

Guiding the way to a more sustainable energy future

The Lehigh University Energy Research Center is working to develop innovative solutions for managing traditional power plants and developing cost-effective alternative energy sources. The center, in partnership with the Mexican Institute for Electricity and Clean Energies, is studying the use of solar thermal energy to improve CO2 capt...

Making cities smarter

The convergence of cyber and physical infrastructure enables better decision-making and efficient resource use in smart cities. Chengshan Xiao, Professor at Lehigh University, is exploring novel hybrid precoding designs to reduce cost, complexity, and power consumption in next-generation wireless networks.

Lehigh professor Panos Diplas elected ASCE fellow

Dr. Panos Diplas, a Lehigh University professor, has been elected as an ASCE Fellow for his distinguished work in civil engineering and research on river phenomena such as scour and meandering. His team's studies aim to improve bridge stability and mitigate the effects of river movement on ecosystems.

TRIPODS+X meets Machine Learning+X

The NSF-funded TRIPODS+X program at Lehigh University brings together top experts to leverage machine learning techniques for various academic pursuits. The workshops focus on areas such as chemistry, robotics, supply chain management, and cognitive neuroscience.

A turbo boost for materials science

A team from Lehigh University and UC Berkeley is developing an efficient Bayesian-guided computational framework to guide the search for new materials. This approach leverages deep learning neural networks to accelerate traditional physics-based simulation methods, enabling researchers to explore previously computationally intractable ...

A material without limits

Researchers at Lehigh University have developed a new, more efficient way to produce cubic boron nitride, a material with exceptional durability and potential for improved power conversion efficiency in electronic devices. The approach enables larger crystals of the material to be produced at lower costs and reduced energy consumption.

Growing computers in petri dishes

A team of scientists from Lehigh University has successfully engineered a living neural network that can perform basic learning tasks. The project, supported by the National Science Foundation, aims to develop new ways to think about computer design and may influence brain-related research.

What's your data privacy style?

Researchers aim to understand how individuals protect their personal data in the digital age. The new study will develop survey instruments and conduct qualitative fieldwork to identify different strategies for navigating algorithmic privacy. It also plans to create experimental prototype tools to explore the design space around algori...

A FEW good collaborators

A multinational team led by Lehigh University's Y.C. 'Ethan' Yang develops a comprehensive model to manage the complex interplay between food, energy, and water resources. The project aims to provide a flexible framework to address supply challenges and maintain security for farmers, utilities, and households.

Cache is king

Xiaochen Guo, a Lehigh University professor, aims to improve data movement efficiency by revamping memory systems. Her goal is to proactively create and redefine locality in hardware, unlocking fundamental improvements for machine learning applications.

Space: Tribology's final frontier

A team led by Lehigh University's Brandon Krick is using a Molybdenum Disulphide (MoS2) coating to reduce friction in space, addressing the challenges of high-temperature and corrosive environments. The research aims to improve satellite performance and reduce energy loss.

Immunotherapy for deadly bacteria shows early promise

Researchers at Lehigh University have designed a small-molecule compound to decorate the surface of Gram-negative bacteria and trigger an immunological response. The compound targets pathogenic bacteria in two distinct ways, generating a promising lead for immunotherapeutic agents against deadly, antibiotic-resistant bacteria.

SourceLehigh University·JournalCell Chemical Biology·DateJul 5, 2018