Researchers Juan Cassasquilla and Roger Melko repurpose Google's TensorFlow algorithm to distinguish phases of a simple magnet and find the boundary between phases. The successful results open up new opportunities for research and potential real-world applications in condensed matter physics.
Researchers have discovered high levels of polarization in radio emissions from Sagittarius A*, providing proof that strong horizon-scale magnetic fields exist. This finding has significant implications for our understanding of black hole growth and the nature of gravity.
A team of international researchers employed powerful computer simulations to study the creation of jets in dying stars. Their work sheds light on an explosive chain reaction that helps form the structure of the universe. The simulations revealed a highly turbulent place, where magnetorotational instability drives the formation of jets.
Perimeter Institute has secured over $4 million in funding for fundamental research, training, and outreach through strategic partnerships. The investments will support renowned physicists and early-career researchers, fueling innovation and advancements in theoretical physics.
Researchers at Perimeter Institute and IQC have discovered a new class of quantum advantages that allow for cause-effect correlation determination without intervention. This breakthrough has significance for both quantum information and quantum foundations, underpinning the promise of quantum technologies.
Weak measurements aim to gain information from quantum systems by minimizing disturbance. However, researchers Joshua Combes and Christopher Ferrie found a classical analogy for the same process, casting doubt on its quantum nature.
Researchers simulate bubble universe collisions to predict observable signatures, ruling out certain models and providing a proof of principle for the multiverse hypothesis. By producing testable predictions, the multiverse model has crossed the line between appealing story and real science.
Researchers at Perimeter Institute discovered novel states in graphene, a 1-atom-thick material, which exhibits the fractional quantum Hall effect. The discovery opens doors to studying new phenomena and potential applications in quantum computing.
Researchers Xiao-Gang Wen and collaborators introduce a new system for classifying symmetry-protected phases of matter, potentially increasing our ability to design states of matter for superconductors and quantum computers. This reclassification provides insight into the fascinating world of quantum entanglement.
Davide Gaiotto has won a $100,000 New Horizons in Physics Prize for emerging work as a young researcher, while Stephen Hawking received a $3 million Fundamental Physics Prize for his path-breaking discoveries about black holes. Perimeter Institute congratulates its researchers on these major international awards.
A team of scientists has discovered a 'launchpad' where jet streams from black holes originate, providing insight into the phenomenon. The finding suggests that the black hole is the engine driving the jets, and spin plays a crucial role in their production.
BMO's $4M investment in Perimeter Institute establishes the BMO Financial Group Isaac Newton Chair in Theoretical Physics, supporting groundbreaking research. The partnership aims to attract top theoretical physicists and drive innovation in Canada.
Physicists prove that tiny but ageing neutrinos can be used to test the foundations of quantum theory at unprecedented cosmological time scales. This method is more decisive than observing macroscopic objects.
Researchers at Perimeter Institute outline a new aspect of Quantum Cryptography, improving the security of data transmission. The study demonstrates enhanced capabilities in quantum key distribution, paving the way for widespread adoption in secure communication networks.
Rob Myers and Eric Poisson, two prominent physicists, have been awarded the CAP prize for their outstanding contributions to gravitational physics and string theory. Their work has significantly impacted foundational questions in string theory and gravitational waves, with implications for future research.