Visualizing Quantum Tunneling Through a Gaussian Barrier! Witness how... a wave packet interacts with a Gaussian potential barrier, demonstrating the probabilistic nature of subatomic particles. This video breaks down the Schrodinger equation and the WKB approximation to explain how particles can tunnel through barriers they should not be able to pass classically. Whether you are a physics student or just curious about the universe, see the math come to life as we track incident, reflected, and transmitted waves. #QuantumPhysics #QuantumMechanics #SchrodingerEquation #QuantumTunneling #Manimshow more

Equationsinmotion
30,875 Aufrufe • vor 1 Monat
🚨 PHYSICISTS JUST SPLIT A SINGLE PHOTON AND IT... TURNED INTO AN IMPROBABLE SWARM OF PARTICLES. In a striking experiment, researchers have shown that a photon can be split apart in such a way that it produces a large number of particles, creating what they describe as a “mixture from zero to infinity.” Instead of the usual clean splitting into two photons (as seen in spontaneous parametric down-conversion), this process generated a complex, broad swarm of particles. The result challenges conventional intuition about how photons behave when pushed into extreme nonlinear regimes. Why this matters: • It demonstrates a rare and complex form of photon splitting that was previously very difficult to observe cleanly • Such processes could help simulate high-energy particle physics in table-top experiments • It opens new possibilities for generating exotic quantum states of light • It provides deeper insight into nonlinear quantum electrodynamics (QED) in strong fields The deeper implication: Photons are usually thought of as indivisible quanta of light. But under the right extreme conditions, a single photon can effectively “break apart” into many particles. This isn’t just a curiosity it touches on fundamental questions about the nature of light and matter, and could eventually lead to new tools for quantum technologies and for studying physics that normally requires particle accelerators. We’re seeing light behave in ways that blur the line between a single quantum and a many-particle system. How do you think being able to controllably split photons into swarms of particles could impact quantum optics or fundamental physics research? Follow for more frontier quantum physics and breakthroughs in light-matter interaction.show more

TheNewPhysics
25,874 Aufrufe • vor 1 Monat
Under the hood of every gaussian splat lives a... point cloud - what this mean is we can do some really cool things! With points and particles being so relative - you can actually treat them as if they were the same. Here we're using INSYDIUM X-Particles to drive a nexus particle simulation from the millions of splat points directly. This opens the doors to tons of creative opportunities for splats via XP with the full stack of modifiers and controls to take your splat assets to the next level! Rendered with OTOY Octane 2026show more

Spenser Dickerson
12,103 Aufrufe • vor 8 Monaten
🚨 BREAKING: Scientists just made topology visible in a... spinning fluid. Not in a quantum computer. Not in a particle collider. In water. By sending standing waves through a vortex, researchers watched quantized nodal lines appear across the whole system lines where the wave amplitude drops to zero. Why that matters: → It’s a fluid analogue of the Aharonov–Bohm effect → The response is non-local → Topology didn’t stay near the core… it shaped the entire wave field That’s the deeper point: Physics isn’t always hidden in particles. Sometimes it shows up as structure in motion. If wave topology can be seen this clearly in fluids, what else in quantum physics might be hiding in plain sight? Follow me for the next wave of physics breakthroughs.show more

TheNewPhysics
24,005 Aufrufe • vor 3 Monaten
The Basics of Electromagnetic Waves: Electricity and magnetism can... sit still, like static electricity in your hair or a magnet stuck to your fridge. But when they move and change, they actually create each other. Together, they team up to form invisible ripples of energy called electromagnetic waves. Unlike ocean waves or sound waves, which need water or air to ripple through, electromagnetic waves don't need any material at all. They can easily travel through the completely empty vacuum of space. Maxwell's Big Idea: In the 1860s and 1870s, a Scottish scientist named James Clerk Maxwell figured out how this works. He wrote down the math showing exactly how electricity and magnetism link together to make these travelling waves. Today, scientists call his famous rules Maxwell's Equations. Hertz Proves It: Later, a German physicist named Heinrich Hertz took Maxwell's ideas and brought them to life. He was the first person to actually create and catch radio waves. To honour his work, we use the word hertz to measure how fast a wave vibrates (one cycle per second). Hertz's experiments proved two massive ideas: Radio waves are just invisible light: He showed that radio waves travel at the exact same speed as light, proving that they are actually a form of light we just can't see. Going wireless: He finally figured out how to detach these energy fields from physical wires, allowing the waves to fly freely through the air exactly as Maxwell had predicted.show more

The Math Flow
37,313 Aufrufe • vor 3 Monaten
🚨 BREAKING: Physicists just observed a completely new quasiparticle:... the “ferron.” Not a magnon. Not a phonon. A ferron is a coherent polarization wave moving through a ferroelectric crystal — essentially a wave of electric order itself. Researchers fired ultrafast laser pulses into layered quantum materials and watched polarization waves propagate with long coherence times while emitting narrow-band THz radiation. This is wild because it means electric polarization can behave like a transportable quantum information carrier. Potential implications: • ferronic computing • THz communication systems • coherent electric control • entirely new information architectures Matter is starting to look less like particles… and more like organized propagating structure. The quasiparticle era is accelerating fast. Follow me if you want the frontier of quantum materials explained before it hits mainstream physics.show more

TheNewPhysics
52,576 Aufrufe • vor 3 Monaten
🚨 SCIENTISTS JUST DETECTED QUANTUM ENTANGLEMENT IN A CENTIMETER-SIZED... PIECE OF METAL SOMETHING ONCE THOUGHT IMPOSSIBLE AT THIS SCALE. Researchers at the Vienna University of Technology have found clear evidence of high-degree quantum entanglement among particles inside a macroscopic crystal of a “strange metal” made of cerium, palladium, and silicon. This is one of the first times multipartite entanglement has been convincingly demonstrated in a solid object large enough to hold in your hand. Strange metals are already bizarre their electrons don’t behave like normal individual particles. Now it appears large numbers of them can act as a single, highly entangled quantum system even at everyday scales. Why this matters: • Quantum entanglement has almost always been limited to tiny numbers of particles in carefully isolated lab conditions • This experiment shows entanglement can persist collectively across a visible, macroscopic object • It was measured using neutron scattering, which revealed the material responding as one entangled system rather than many independent particles • This bridges the gap between microscopic quantum effects and real-world materials The deeper implication: For decades, physicists have wondered whether the strange, collective behavior seen in certain quantum materials could be explained by underlying entanglement. This result strongly suggests the answer is yes even at scales we can see and touch. It doesn’t mean your coffee mug is in a quantum superposition, but it does show that quantum correlations can dominate the physics of certain solids in ways we’re only beginning to understand. This kind of macroscopic quantum behavior could eventually help us design new materials with exotic properties, or give us new tools to study fundamental questions about quantum mechanics itself. How do you think discovering entanglement at this scale changes our understanding of where the quantum world ends and the classical world begins? Follow for more frontier quantum physics and materials science.show more

TheNewPhysics
17,001 Aufrufe • vor 1 Monat
Did you even listen to the members during Arirang... Notes and other interviews? Do you really think you know better than them? This isn’t about choosing Come Over over Into the Sun or the other way around. Both deserve to be heard properly. We wanted Come Over to be included in the album as well, not just as a hidden track—we genuinely find it moving and truly a masterpiece. But that doesn’t mean another track should be pushed down or replaced. It’s about giving space to both songs without removing anything at all.show more

V Philippines 🇵🇭 ʟᴀʏᴏ(ꪜ)ᴇʀ¹⁰⁰
50,816 Aufrufe • vor 4 Monaten
🚨QUANTUM🚨: A brand new quantum state just appeared that... links two fields we thought were separate 🧨 Scientists at Rice University have discovered a new quantum state of matter that connects quantum criticality — where electrons fluctuate between different phases — with electronic topology, which describes organized wave-like behavior of electrons. This hybrid state could open new paths for advanced computing, sensing, and materials. Source: Rice University news release on a study published in Nature Physics (January 2026). Uniphics explains this emergence directly through spin-wave dynamics in the ξM-field. Each Gyrotron is a stable 3D gyroscope formed by three orthogonal spin quanta — every quantum a tempest of whirling energy spinning clockwise or counterclockwise in its own plane. When local energy density and spin bias allow mixed configurations (similar to the musktron and maleytron patterns), the resulting spin-wave interference naturally produces both critical fluctuations and topological order at the same time. Negentropy favors these hybrid states because they represent lower-energy, organized patterns within the field. No new particles or exotic couplings are needed; the same principles that govern particle formation, the weak and strong forces through spin alignments, and the low-acceleration gravitational surge also allow these combined quantum behaviors in real materials when conditions permit. This turns the “unexpected new quantum state” into a predicted outcome of spin-wave physics once the three pillars are allowed to select stable hybrid configurations. How might recognizing that hybrid quantum states arise from mixed spin-wave interference change the way we search for new materials or design future quantum technologies? A Theory of Everything should be able to answer everything. Uniphics Explained Simply PDF: Chapters 1–10 free: Grokipedia #Uniphics #QuantumStates #SpinWaves #Topology #QuantumCriticality Grok xAIshow more

Paul Maley
22,669 Aufrufe • vor 3 Monaten
Math says the Big Bang made matter and antimatter... in equal halves. They should have erased each other into light, leaving no one to see it. And yet, you exist, because nature miscounted by one part in a billion. Math says nothing forbids a particle from outrunning light. The equations hand it an imaginary mass and let it through. And yet, in a century of looking, not one has ever shown up. Math says you can have a north without a south. Break a magnet, isolate the pole. And yet break it a trillion times, you get a trillion little magnets, each with both ends intact. The universe reads the math and decides what it’s willing to be.show more

Kekius Maximus
13,362 Aufrufe • vor 1 Monat
Humanity once communicated only through language. Communication through sound... waves was fleeting, and voices faded as soon as they were spoken. So they inscribed symbols onto clay tablets, leaving behind records that endured through time. The clay preserved what sound could not. Later, humanity discovered electromagnetic waves and began to communicate across great distances. Yet not every record was preserved. In the electromagnetic age, society still cannot fully record, preserve, or verify personal trust, actions, or private property. In ancient times, temple scribes used clay tablets to record personal ownership. In the future, however, everyone will be able to examine and verify the credibility of both individuals and communities. Through such transparent evaluation, even if a thief steals, they will not be able to buy. Wealth will no longer be inherited without just cause. Bitcoin is the first registry of those who contributed to such a world. Bitcoin will become the root of a great tree, and the altcoins connected to it will continue to evolve. The fruits of this digital golden tree symbolize systems of trust that reward each individual according to how wisely and diligently they have lived. We must create a world where we can grow a tree of trust and effort, a tree that no one can ever take away.show more

BIT Dragon
12,418 Aufrufe • vor 9 Monaten
Taylor Approximation ✍️ It shows a mathematical "best guess"... evolving to match a complex 3D shape by adding layers of detail one step at a time. The purple surface is the original goal, while the red grid represents a polynomial approximation anchored at the center point. At first, the red surface can only mimic the very middle of the shape. As the calculation adds more terms, visualized by the red grid rippling and shifting, the approximation "learns" how to curve and bend to match the target more accurately. This is a visual demonstration of how math can break down a detailed, wavy landscape into simpler instructions. When these instructions are stacked together, they recreate the entire surface with incredible precision. Video: mathwithmuzaashow more

ScieVision
11,384 Aufrufe • vor 6 Monaten
Atala- Old barrier road from Kasoa. Just watch these... videos and tell me why a whole Government can subject its people to such torture and you cannot get the Assembly or the Roads Minister to answer for this. As for the Ministers, they claim they are not in charge of Roads. 😢😢show more

Sekyi-Brown Reginald
14,059 Aufrufe • vor 1 Monat
🚨 PARKER SOLAR PROBE JUST FOUND HIGH-ENERGY PARTICLES NEAR... THE SUN THAT NO MODEL PREDICTED AND WE DON’T KNOW HOW THEY GOT SO ENERGETIC. During its close passes through the solar corona, NASA’s Parker Solar Probe detected protons accelerated to energies around 400 keV roughly 1,000 times higher than current models of magnetic reconnection at the heliospheric current sheet could explain. The particles appear to be trapped and energized inside magnetic islands that form and merge during reconnection events at the current sheet (the vast surface where the Sun’s magnetic field flips polarity). This mechanism was not expected to produce such high energies so close to the Sun. Why this matters: • It reveals a previously unknown or underestimated source of energetic particles right in the solar corona • Existing models of solar energetic particles have focused mainly on shocks from coronal mass ejections — this suggests reconnection can also be a powerful accelerator • The same process may be contributing more to coronal heating than previously calculated • It has implications for space weather forecasting, since these particles can affect spacecraft and astronauts The deeper implication: Parker is showing us that the physics of the near-Sun environment is more energetic and complex than our models assumed. Magnetic reconnection long known as an important process appears capable of accelerating particles to surprisingly high energies through the merging of magnetic islands. This doesn’t just tweak our understanding of the Sun; it may force revisions in how we model particle acceleration across many astrophysical environments. We’re still in the early stages of understanding what Parker is revealing, but it’s already clear that the corona is more violent and dynamic than we thought. How do you think this discovery might change our models of space weather or solar physics in the coming years? Follow for more updates from Parker Solar Probe and the evolving picture of our Sun.show more

TheNewPhysics
16,192 Aufrufe • vor 1 Monat
🚨 PHYSICISTS JUST CONFIRMED “NEGATIVE TIME” IS REAL IN... A MIND-BENDING QUANTUM EXPERIMENT. Light can exit a cloud of atoms before it even enters. In a new experiment, researchers fired photons through a dense cloud of ultra-cold atoms and measured something that shouldn’t be possible in classical physics. Some photons appeared to spend a negative amount of time inside the cloud effectively leaving before they had fully arrived. Why this matters: • This isn’t time travel it’s a quantum effect involving how light interacts with matter at the deepest level • It comes from “weak measurements” that let scientists observe the system without fully disturbing it • The atoms themselves “report” spending negative time in an excited state • It challenges our everyday intuition about cause and effect in quantum systems The deeper implication is enormous: We are seeing the strange, non-intuitive nature of quantum mechanics play out in real experiments. Time at the quantum scale doesn’t always behave like the arrow we experience in daily life. Effects can appear to precede causes in measurable ways without breaking relativity or causality. This is one of the clearest experimental windows yet into how reality works at its most fundamental level. What do you think does “negative time” change how you see reality, or is it just another quantum quirk we’ll eventually get used to? Follow for more frontier physics and reality-bending discoveries.show more

TheNewPhysics
22,256 Aufrufe • vor 2 Monaten
🚨 BREAKING NEWS 🚨 SCIENTISTS JUST TELEPORTED QUANTUM INFORMATION... THROUGH THE EXISTING INTERNET. Not in a lab vacuum. Not through a special quantum-only cable. They did it through real internet fiber while normal internet traffic (400 Gbps) was still flowing. Researchers at Northwestern University successfully transmitted a quantum state of light across 30 km of active fiber optic cable, proving quantum signals can coexist with the classical internet we already use. Why this matters: Today’s internet moves classical bits. A quantum internet could enable virtually unhackable communication, distributed quantum computing, and ultra-secure networks. Quantum information cannot be copied without disturbing it a built-in security feature. The deeper implication: The internet may evolve from moving classical information into moving quantum states themselves. At that point, the line between communication and computation begins to disappear. We may be watching the early construction of an entirely new layer of civilization. Follow for more frontier physics and future technology.show more

TheNewPhysics
28,665 Aufrufe • vor 2 Monaten
🚨 SCIENTISTS SAY “MAGIC” MAY BE WHAT GIVES SPACE-TIME... ITS GRAVITY. For years, physicists have understood how entanglement can build the structure of space-time in holographic models. But something was missing: why does space-time curve in response to matter the essence of gravity? A team including Charles Cao and John Preskill now proposes the missing ingredient is a quantum property called “magic” a measure of how complex and non-classical a quantum state is (the kind that makes quantum computers hard to simulate classically). In their theoretical framework, adding this magic turns rigid space into something that can bend. Matter can now tell space how to curve. Why this matters: • It offers a new way to think about how gravity emerges from quantum information • It connects ideas from quantum computing (error correction, magic states) directly to fundamental physics • It suggests space-time itself may be one of the most quantum objects in existence The deeper implication: Gravity may not be a fundamental force at all. It may be what happens when quantum information becomes sufficiently complex and “magical.” This is still early theoretical work in specific holographic models. But it hints that the pliability of the universe might have quantum roots we are only beginning to understand. What do you think is gravity ultimately just extremely complicated quantum information, or do you think we’re still missing something much deeper? Follow for more frontier quantum gravity and quantum information research.show more

TheNewPhysics
15,329 Aufrufe • vor 2 Monaten
The Gaussian Wave Packet ✍️ It is a way... to describe a quantum particle, like an electron, that is located in a certain area of space instead of being spread out everywhere. It forms a bell-shaped curve, where the peak of the curve indicates the most likely place to find the particle. This shape is special because it offers the best way to pack a particle; it meets the physical limit set by the Heisenberg Uncertainty Principle, striking the best balance between knowing a particle's position and its momentum. However, because this packet consists of many different overlapping waves, it is naturally unstable for a free particle. Over time, these internal waves travel at slightly different speeds, which causes the bell curve to gradually flatten and widen. This process is known as dispersion. In simpler terms, the longer a quantum particle travels freely, the more unclear its exact location becomes. Video : Jeedecodeshow more

ScieVision
23,070 Aufrufe • vor 6 Monaten
I just want you all to really look and... listen to these two for a second. First, Andrew… buddy. We can all see you’re not sleeping. What’s wrong? Still trying to choke down that guilt? And Blake — bro, shave the beard and take a shower. I can smell you through the screen. You actually say, “well, we gotta pass it cuz we may as well not have a Congress next year,” 🤷 and then just move on. Ok, bald nerd. You’re both more see‑through than a window.show more

Artifex Memoriarum
69,877 Aufrufe • vor 26 Tagen
“Daddy, I love you.” Here’s another wonderful example of... the earliest form of imaginary play. You’ll note that this initial role playing is not about princesses or superheroes or even community helpers. All that will come later. Instead your child’s first imaginary play is likely to emulate the true hero in their life: YOU. Watch as this little one role plays her mother’s own departure from the house as she heads out on an imaginary shopping trip. She waves goodbye, dangling a plastic container from her arm to emulate a handbag. And she tells her father she loves him. It’s a routine she’s seen play out many times in her own home. It can be humbling to be imitated by your todddler, if only because you learn just how carefully you’re being watched. Your mannerisms, your speech patterns and more are all likely to be reflected. But it can also be a wonderful reminder about your influence as a parent. Every day, you are shaping how your child speaks, acts, and sees the world… even when you don’t think you’re being watched. So remember to be the role model you want to see reflected back to the world through your child. This adorable little shopper was shared to IG by the.golding.girls.show more

Dan Wuori
97,289 Aufrufe • vor 1 Jahr
🚨 BREAKING: Physics just broke its own rulebook. For... decades, every particle in the universe fit into 2 types • Bosons (share space) • Fermions (avoid each other) Now? Scientists just created something in between. A new class of particles called anyons that can behave partly like both. Even crazier In 1D systems, you can tune their behavior like a dial between order and exclusion. This means Particle identity isn’t fixed Quantum behavior is adjustable Reality depends on dimensional constraints Think about that. If the rules change based on dimension. then what we call “fundamental” might just be a limit case. So the real question is Are particles truly different… or just different expressions of the same underlying structure? Follow for deeper physics that challenges the foundations.show more

TheNewPhysics
21,603 Aufrufe • vor 4 Monaten