Tag: physics

  • Time-bending Crystals, Group Streaks & Unstoppable Alarms

    Time-bending Crystals, Group Streaks & Unstoppable Alarms

    Time Crystals: From Science Fiction to Everyday Security


    Artwork by Affan Qasim, created with Gemini Pro

    Picture pulling out a 1000 Rupee bill and seeing its security stripe pulse like a heartbeat—shifting, shimmering, and repeating in ways counterfeiting can’t replicate. That’s the intriguing potential of time crystals, a form of matter physicists once believed was impossible.

    Researchers at the University of Colorado Boulder have now created the first visible time crystals. Made from twisted liquid crystals illuminated by light, these crystals ripple with vibrant tiger-stripe patterns that are sturdy, stable, and sometimes even visible with the naked eye.

    This isn’t sci-fi fuel for a time machine, but it could redefine how we safeguard currency, store data, or develop futuristic displays. Imagine screens that animate themselves, changing colors or patterns rhythmically, powered by the principles of time symmetry breaking.

    By layering different types of time crystals, it might be possible to produce holographic images that are extremely secure and constantly shifting or create bright, shimmering surfaces for wearable tech or architecture. From seemingly impossible physics to holograms on banknotes, time crystals show that even the wildest science can find practical applications right in your pocket.

    Snapchat Enhances Features: Unlimited Storage and Group Streaks

    Artwork by Syed Alihasan Agha, created using Gemini Pro
    Artwork by Syed Alihasan Agha, created with Gemini Pro

    Snapchat is changing the game again: the app renowned for disappearing messages now aims to keep your chats forever and encourage ongoing friendships.

     

    With “Infinite Retention,” you can pin conversations so they stay put instead of fading away, a bold move away from Snapchat’s original “disappear after viewing” approach.

    Meanwhile, “Group Streaks” turn your group chats into a friendly competition, where everyone contributes to maintaining a streak. Let one lazy friend slip up, and the whole record is lost. This feature gamifies chatting, making your group conversations more of a daily routine than a casual drop-in.

    “Good morning! It’s a sunny day. Solve for X.”

    Artwork created by Daniyal Khuhro using Gemini
    Artwork by Daniyal Khuhro, generated with Gemini

    Today, it seems like fresh innovation is scarce, replaced by rebrands of familiar concepts.

    Awake, the latest alarm app for iOS, demands that users complete a task or challenge before turning off the alarm, setting itself apart. It now includes features like weather updates, morning news, calendar reminders, and even social media block functions—all bundled into one package. Though useful, these features are nothing new.

    Most of these added features come with a hefty price tag—$19.99 annually or $6.49 monthly—highlighting that they’re selling convenience, not novelty, as usual.

  • Dark Energy Is Stranger Than We Ever Imagined

    Dark Energy Is Stranger Than We Ever Imagined

    The cosmos is a fascinating enigma: only 5% of all mass in existence is comprised of ordinary matter. The remaining composition is 25% dark matter and a staggering 70% dark energy. While dark matter is already an intriguingly elusive substance made of particles that seemingly do not interact with light, dark energy presents an even greater mystery. Scientists are certain of its existence, yet its characteristics continue to defy expectations.

    The presence of dark energy is inferred from its influence on the universe’s expansion. Observations indicate that the universe is not only expanding but doing so at an accelerating rate, as evidenced by measurements of distant celestial objects with a constant and known brightness. Dark energy is the theoretical force propelling this accelerated expansion.

    However, the current understanding of dark energy is not without its challenges. One puzzling observation is that the force it exerts seems to have varied. In fact, it appeared to have had a greater impact during the early stages of the universe than it does now—a finding that many initially attributed to possible measurement errors since most theoretical models of dark energy assume a consistent value over time.

    Contrary to earlier beliefs, new findings from a comprehensive three-year initiative known as the Dark Energy Survey indicate that dark energy may indeed be in flux. This revelation could potentially overturn established physical models of the cosmos.

    An image showing a fraction of the total data from DESI year 3, highlighting the gravitational structures of the universe.
    This represents a small fraction of the total DESI year 3 data, illustrating the gravitational structures of the universe—now the largest 3D map created.
    DESI Collaboration/DOE/KPNO/NOIRLab/NSF/AURA/R. Proctor

    The research utilized data collected by the specialized Dark Energy Camera located at the Víctor M. Blanco 4-meter Telescope in Chile, as well as the Dark Energy Spectroscopic Instrument (DESI) mounted on the Nicholas U. Mayall 4-meter Telescope in Arizona. A vast coalition of researchers from around the globe collaborated on this project, which included mapping the universe’s structures in three dimensions, as depicted above.

    These discoveries suggest that dark energy is not a static entity but rather one that evolves over time. The research indicates that it was seemingly stronger during the universe’s infancy but has grown weaker in present times. This dynamic nature contradicts the traditional view of dark energy as a constant force, akin to gravity.

    “This finding is captivating because it points to potential physics beyond the current cosmological models,” stated Juan Mena-Fernández from the Subatomic Physics and Cosmology Laboratory in Grenoble, France. “If subsequent data corroborate these results, we could be on the threshold of a scientific revolution.”

    While researchers remain cautious about completely discarding established cosmological theories, advanced tools like DESI, capable of capturing light from thousands of distant galaxies at once, are refining their comprehension of dark energy. More comprehensive data, alongside theoretical advancements, will help clarify the nature of this perplexing force.

    “Our results provide fertile ground for theorists as they explore both new and existing models. We eagerly await their insights,” commented Michael Levi, the DESI director and a scientist at Berkeley Lab. “Regardless of what dark energy turns out to be, it will significantly influence the destiny of our universe. It’s astounding that we can gaze at the cosmos and tackle one of humanity’s most profound questions.”