Two RIT scientists, Aaron Gerace and Matthew Montanaro, received the USGIF Academic Achievement Award for solving a stray-light problem affecting the Landsat 8 satellite's Thermal Infrared Sensor. They developed an algorithm to estimate source problems in real-time, improving the accuracy of Earth's surface temperature readings.
Researchers at RIT are developing a computational framework to reconstruct and visualize myocardial active stress, enabling direct appraisal of cardiac function. This will help detect and localize regions with diminished contractile activity, improving diagnosis and treatment of cardiac disease.
A RIT professor developed a microfluidic device that detects the Ebola virus using CRISPR gene-editing technology, allowing for early treatment and potential outbreak control. The device can detect the virus within five minutes of combining automated sample processing and fluorescence sensing.
RIT Professor Grover Swartzlander is receiving a Phase II award from NASA's NIAC program to explore the feasibility of diffractive solar sails. Diffractive solar sails could be more efficient and withstand the heat of the sun better than traditional reflective sails.
Three Rochester Prep High School seniors, working in the RIT Genomics Lab, isolated and genetically sequenced a Yimella bacterium that produces antibiotic compounds against Escherichia coli and Bacillus subtilis. The discovery is significant in addressing antibiotic resistance, a growing concern worldwide.
A team of researchers at RIT has developed a phonon laser for sound using the optical tweezer technique, which could lead to breakthroughs in sensing and information processing. The device uses an optically levitated nanoparticle to create a laser-like situation, enabling the investigation of fundamental quantum physics.
Researchers at RIT/NTID create short, conceptually accurate signed videos to address academic language barrier in physics. The project aims to increase deaf individuals' engagement in STEM disciplines by creating a sustainable online repository of technical signs.
Researchers from Rochester Institute of Technology and Georgia Tech developed a new approach to simulate the heart's electrophysiology in real-time, allowing doctors to better discuss life-threatening heart conditions with patients. This method uses WebGL code to repurpose graphics cards for faster scientific computing applications.
A RIT professor is using a $486,124 NSF grant to explore how experiential learning improves student interest in STEM fields. The research aims to develop practical assessment tools and design a project-based physics course for freshman students.
A team of researchers, led by Sungyoung Kim, is developing a comprehensive method to preserve and reconstruct the 'sound signature' of cultural heritage sites. The project focuses on auralization, which simulates unique acoustical environments in virtual or physical spaces, and aims to provide non-expert humanities researchers with dig...
Researchers studying Nicaraguan Sign Language find that signs don't move towards the face to be easier to understand. The study uses machine learning and computer vision techniques to analyze language change over 40 years, shedding light on how languages evolve.
Researchers at RIT are working on a project to use hyperspectral imaging systems to track vehicles and pedestrians more accurately. The system will utilize high-resolution color information to better identify individual objects from afar and overcome cluttered environments.
Rochester Institute of Technology professor Michael Zemcov is contributing to NASA's SPHEREx mission, which will map galaxies across the universe to study inflation and galaxy formation. The mission aims to answer questions about the origin and evolution of key biogenic molecules like water and carbon monoxide.
A new study by Rochester Institute of Technology researchers found that traditional admissions metrics like the GRE Physics Subject Test do not predict completion and hurt diversity in physics. Instead, undergraduate GPA is a more robust predictor of Ph.D. completion.
Astronomer Jason Nordhaus develops a system of complex algorithms to pinpoint existence of previously undiscovered planets and celestial bodies in dying star systems. The technique helps understand the fate of our solar system, other star systems, and stellar interactions.
Researchers at RIT are developing an advanced visual tracking system using deep learning and artificial intelligence to refine object location and movement. The system has potential applications in autonomous navigation, drones, traffic monitoring, safety, security, disaster response, and human-computer interaction.
A RIT researcher is developing new signal processing solutions to improve data analysis efficiency and reliability. The project aims to reduce the impact of faulty measurements in complex sensing systems by creating algorithms that can detect and mitigate corrupted data.
A research group at RIT is measuring hospitality industry contributions to disaster recovery efforts, valuing non-financial resources such as staff training and community support. The study aims to provide a holistic understanding of the hotel industry's role in supporting local communities during crises.
A Rochester Institute of Technology researcher is collaborating on a multi-university project exploring quantum science in levitated mechanical systems. The project aims to create and sustain a quantum state with levitated optomechanics using advanced sensing designs based on the 'optical tweezers' technique.
A study on elephant trunk behavior could lead to robot hand designs with flexible hands or grippers. Researchers found that elephants apply more force when picking up small particles due to the weakest link theory, allowing them to stabilize and grasp various-sized food items.
RIT researchers are building an automatic speech recognition application using deep learning to document and transcribe the traditional Seneca language. The project aims to support other rare or vanishing languages as well. The team has collected over 50 hours of recorded material and achieved promising results.
The RIT-led collaboration simulates neutron star mergers, linking them to the creation of heavy elements like gold and platinum. The project aims to improve understanding of binary neutron star merger processes, including electromagnetic signals and strong gravitational wave signatures.
The Image Permanence Institute will study the recovery of modern museum inkjet print collections affected by water disasters through freezing and freeze drying methods. The three-year project aims to determine if these methods are safe and effective for recovering damaged inkjet prints.
Researchers at Rochester Institute of Technology have built the first simulation to predict light signals from supermassive black hole binaries nearing merger. The model combines information gathered from light- and gravitational waves, enabling scientists to identify these monster collisions with existing and future telescopes.
The National Science Foundation INCLUDES program aims to create a diverse STEM workforce. RIT professor Casey Miller will direct the Inclusive Practices Hub to enhance diversity, equity, and inclusion in STEM Ph.D. programs.
Researchers at RIT will use photonic integrated circuit technology to improve processing speed and energy consumption of brain-inspired computing techniques. The project aims to realize high performance neural networks using light, enabling applications in autonomous systems, imaging, and cybersecurity.
A new study from RIT reveals that galaxy outskirts are likely hunting grounds for dying massive stars and black holes. Researchers have identified a method to pinpoint the location of massive black holes using supernovae with collapsing cores, offering a promising approach to detecting gravitational waves.
A Rochester Institute of Technology researcher has developed a new solar sailing technology using diffractive metafilm materials that could propel spacecraft more efficiently and reduce overheating. The new material can steer reflected or transmitted photons for near-Earth, interplanetary, and interstellar space travel.
RIT will continue to lead the New York State Pollution Prevention Institute (NYSP2I) after a five-year award from the DEC. Since 2008, NYSP2I has made significant economic, environmental and social impacts across the state, including operational cost savings, assistance projects, and research initiatives.
Rochester Institute of Technology faculty Jing Zhang has received a CAREER award from the National Science Foundation to develop high-efficiency ultraviolet light sources. Her research could advance applications in photolithography, 3D printing, environmental purification systems and chemical sensing.
RIT researcher Zoran Ninkov developed an astronomical imager inspired by a cinema projection system, capturing light signatures from multiple objects in the same area of sky. NASA is funding $550,000 to recoat the device with aluminum for improved performance at ultraviolet wavelengths.
Researchers at RIT are creating a smart warehouse system where forklifts and robots can communicate to optimize workload allocation and navigation. The goal is to increase productivity and safety by automating warehouse processes.
Researchers at RIT have improved the fabrication process of nano-structures for electronic devices, increasing performance and reducing costs. The new method uses indium-gallium-phosphide materials and combines benefits of wet etching and reactive ion etching.
Researchers predict characteristic light signals from supermassive black holes before merger using multimessenger astrophysics. The study simulates binary black hole collisions and provides insights into electromagnetic signals accompanying gravitational waves.
Astronomer Jeyhan Kartaltepe is leading a team that will use the James Webb Space Telescope to study the formation of the universe's first galaxies. The Cosmic Evolution Early Release Science Survey will provide detailed information about galaxy structures and physical conditions.
Researchers at RIT suggest that outer gas disks of big spiral galaxies are suitable for hosting orbiting black holes and merging massive black holes. This discovery could help explain how black-hole pairs form and provide a new way to study the universe using gravitational waves and traditional light measurements.
RIT researchers played a significant role in the groundbreaking detection of colliding neutron stars by LIGO. This event marked the first time both gravitational waves and light were detected from the same cosmic collision.
Researchers at RIT are refining lab-on-chip devices to analyze diseases faster and more cost-effectively. Blanca Lapizco-Encinas is improving the separation of biological cells and biomolecules using a combination of chromatography principles and dielectrophoresis.
RIT researchers, in collaboration with LIGO and Virgo, successfully triangulated the position of a 1.8 billion-year-old black hole merger. With three advanced detectors observing together, scientists can now pinpoint locations with higher precision, enabling more accurate electromagnetic counterparts searches.
A team of engineers and clinicians at Rochester Institute of Technology are developing a non-contact video recording technology to detect atrial fibrillation. The app will capture heart activity data while patients use tablets or smartphones, providing valuable insights for medical practitioners.
A study published in 'Nature Astronomy' confirms that supermassive black holes can form gravitationally bound pairs when galaxies merge. The binary system has a mass of approximately 40 million times the Sun's, and its orbital period is about 100,000 years.
Research at RIT develops new precision quantum sensing solutions using levitated optomechanics, capturing data with improved accuracy. The study aims to create smaller and lighter sensors for various applications, including detecting gravitational waves and perfecting quantum computing.
A team of researchers at Rochester Institute of Technology is exploring the use of nanowires and new materials to improve solar cell technology. By maximizing the amount of solar spectrum that can be absorbed, they aim to increase the efficiency of solar power conversion and make it more cost-effective for consumer markets.
Researchers at RIT are working on developing more efficient, durable and cost-effective carbon nanotube technology for electronic components. The project aims to create affordable carbon wiring with electrical properties competitive with metal wiring.
The Rochester Institute of Technology has been awarded a grant to develop a Scientists-In-Training Program for Deaf and Hard-of-Hearing Undergraduates. The program aims to increase the number of underrepresented students entering Ph.D. programs in biomedical sciences.
Rochester Institute of Technology (RIT) boasts the largest number of federally funded summer research programs for undergraduate students in New York. The institution's College of Science has launched several innovative research experiences, including a new program in multimessenger astrophysics that combines gravitational wave detecti...
Researchers suggest that massive star explosions can expel newborn black holes with strong natal kicks, affecting their spin and alignment. This phenomenon could help explain years of tentative evidence suggesting black holes receive such kicks.
Researchers at Rochester Institute of Technology contributed to the measurement of a newly discovered black hole's tilt and spin, which can reveal clues about how massive stars die. The findings support Einstein's general theory of relativity and rule out extreme predictions for black hole spins.
Researchers developed a new protocol to improve information flow between emergency responders and decision-makers, reducing delays by seconds. The Multi Node Label Routing (MNLR) protocol helps detect failures and reroute data quickly, making it more reliable for emergency situations.
Researchers have used archival data from NASA's New Horizons mission to measure visible light from other galaxies, giving an upper limit to the amount of light in the cosmic optical background. The findings offer promise for future astronomy measurements from the outer solar system.