A team of researchers has solved a century-old problem in physics, discovering how a quantum system slowly loses energy.

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According to a growing body of data, dark energy is not constant. Instead, physicists claim, itâs slowly getting weaker. This has understandably shaken our understanding of the universe â this week, physicists show that the new data is compatible with string theory, and that the universe will eventually collapse. Letâs take a look.
Paper: https://arxiv.org/abs/2506.
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Background: Osteosarcoma (OS) is the most frequently occurring malignant bone tumor in humans, primarily affecting children and adolescents. Significant advancements in treatment options for OS have not occurred in the last several decades, and the prognosis remains grim with only a 70% rate of 5-year survival. The objective of this study was to investigate the focused ultrasound technique of histotripsy as a novel, noninvasive treatment option for OS. Methods: We utilized a heterotopic OS murine model to establish the feasibility of ablating OS tumors with histotripsy in a preclinical setting. We investigated the local immune response within the tumor microenvironment (TME) via immune cell phenotyping and gene expression analysis.
Yiming Zhang didnât grow up playing chess. Like many other people, the Carnegie Mellon University Ph.D. student discovered the Netflix series âThe Queenâs Gambitâ during the pandemic and began playing online. However, he quickly realized how unnatural it felt playing against chess bots.
âAfter I learned the rules, I was in the bottom 10%, maybe 20% of players online,â said Zhang, who is part of the Language Technologies Institute (LTI) in CMUâs School of Computer Science. âFor beginners, itâs not interesting or instructive to play against chess bots because the moves they make are often bizarre and incomprehensible to humans.â
Zhangâs frustration led him to develop Allie, a chess bot powered by artificial intelligence that demonstrates the benefits of AI tools that think like humans. He believes training future AI systems to ponder and deliberate on complex problems could create better agents for use in therapy, education and medicine.
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Researchers at the Universitat AutĂČnoma de Barcelona (UAB) have successfully created a new form of magnetic state known as a magneto-ionic vortex, or âvortion.â Their findings, published in Nature Communications, demonstrate an unprecedented ability to control magnetic properties at the nanoscale under normal room temperature conditions. This achievement could pave the way for next-generation magnetic technologies.
As the growth of Big Data continues, the energy needs of information technologies have risen sharply. In most systems, data is stored using electric currents, but this process generates excess heat and wastes energy. A more efficient approach is to control magnetic memory through voltage rather than current. Magneto-ionic materials make this possible by enabling their magnetic properties to be adjusted when ions are inserted or removed through voltage polarity changes. Up to now, research in this field has mainly focused on continuous films, instead of addressing the nanoscale âbitsâ that are vital for dense data storage.
At very small scales, unique magnetic behaviors can appear that are not seen in larger systems. One example is the magnetic vortex, a tiny whirlpool-like magnetic pattern. These structures play an important role in modern magnetic data recording and also have biomedical applications. However, once a vortex state is established in a material, it is usually very difficult to modify or requires significant amounts of energy to do so.
Astronomers at the Pan-STARRS Observatory in Hawaii made history in 2017 when they detected âOumuamua, the first interstellar object (ISO) ever observed.
Two years later, the interstellar comet 2I/Borisov became the second ISO ever observed. And on July 1st, 2025, the Asteroid Terrestrial-impact Last Alert System (ATLAS) in Rio Hurtado detected a third interstellar object in our Solar System, the comet now known as 3I/ATLAS (or C/2025 N1 ATLAS).
Like its predecessors, the arrival of this object has fueled immense scientific interest and led to proposals for missions that could rendezvous with future ISOs.