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$CCCX / $INFQ Infleqtion's neutral atom technology referenced in the All In Podcast! Not only do they have real products in the field with quantum sensing, but Infleqtion is also leveraging their neutral atom technology to build quantum computers without the need for huge chandelier cryogenic setups. On the...

26,970 Aufrufe • vor 9 Monaten •via X (Twitter)

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My 10x stock idea from GTC isn't photonics?! But it does involve lasers. Say hello to $INFQ. It's a newly IPO'd quantum stock generating tens of millions in revenue in space + defense applications with very unique technology. Infleqtion went public last month but it's trading 40% below its IPO price with a sub $2B market cap. $INFQ trades at roughly 70x trailing sales on $29M in revenue. Compare that to $RGTI at $6B market cap on just $7M in revenue, that's 860x sales. I chatted with $INFQ's Chief Administrative Officer, Julie McGee, to dig in further but here's the TLDR. Most quantum companies need to cool their chips to near absolute zero temps just to operate. Infleqtion uses "neutral atom" technology that traps individual atoms inside a glass cell using lasers and runs them at room temperature. It takes the power of a few hairdryers. No giant refrigerators. Way cheaper and way easier to scale. And unlike most quantum names they're actually shipping products NOW. Quantum clocks for GPS-denied navigation, RF sensors, inertial navigation systems. Selling to NASA, the DoD, and the UK government. Their quantum clock is being qualified by SpaceX for satellite systems. Quantum brings a whole new level of precision that works on the ground, in the sky, and underwater. Their technology can enable submarines to navigate without ever linking up to a satellite. GPS jamming is also becoming a huge problem on the battlefield, showing up in Ukraine and Iran. Quantum timing is inherently unjammable and unspoofable. They also had a dedicated spot inside the Nvidia booth at GTC. $INFQ partnered with Nvidia to demo the first commercial materials science application running on logical qubits and are working with Nvidia's NVQLink to scale quantum-classical hybrid computing. What's next: 30 logical qubits targeted this year, one of the most important milestones in the race to fault tolerant quantum computing by 2028. Plus a new NASA contract to measure Earth's gravity from space. Infleqtion combines an attractive valuation with extremely unique technology (they're the only neutral atom quantum company publicly listed). Could easily see this re-rating fast, I just think the IPO timing was poor with Iran. Could be adding this as a lottery ticket to my Asymmetrical Bets portfolio soon... This post was not sponsored or influenced in any way by $INFQ. All thoughts are my own, NFA / DYOR.

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📣 Dmitry Saksonov: A Message to the Community You've been waiting for this. We've been waiting for this. And today is the day we start showing our hand. 🎬 In this video, Dmitry Saksonov — the founder of our ecosystem — speaks openly for the first time about the journey from 2023 to 2026. About those who believed first. About every single person who became the foundation of what we're building 🙏 ▶ Watch this video. Listen to his words. This isn't just a progress report. It's an honest conversation about why we are destined to succeed. 🌍 But what's next? The world is changing right now. 🇺🇸 The US administration is investing $2 billion into quantum technologies — the largest government investment in the sector to date. 🧠 Quantum is the next frontier after AI. And those who aren't ready for the quantum era will be left behind. ⚠ Neither Bitcoin nor Ethereum are prepared for this. Their cryptography is vulnerable. ⚡ ATOM Quantum ($ATQM) — this is what comes next ⚡ A quantum-resistant reserve asset for the AI era. A financial operating system for the post-quantum age, built on Super-Quantum Ruliadic Oracle technology. 🏔 It's the apex of everything we've built — the layer that unites JGGL, ATLA, IMBA, and TEKI into one unbreakable system. ⚙ The MVP is in its final stages. Our engineers are working 16-hour days 👨‍💻 ✅ Post-quantum signatures ✅ Fast blocks ✅ EVM compatibility All of this is already being tested. 🔐 How to become part of ATOM Quantum? ATOM Quantum can't simply be bought. 🚫 It's not available to those who haven't walked this path with us 🗓 Tomorrow we're launching Atom Quantum Packs. Atom Quantum Packs are your exclusive access to $ATQM. But to unlock the ability to purchase them, you must prove your commitment to the ecosystem 👇 You must hold all four of our core assets: 🪙 JGGL 🔷 ATLA 🎵 IMBA 🎬 TEKI (any amount) 🧩 Only those who've collected all four elements will receive the key to Atom Quantum Packs. 👁 Watch the video. Understand the scale of what we're building. And get ready🚀

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6,100-Qubit Processor Shatters Quantum Computing Record | David Nield, ScienceAlert Another major quantum computing record has been broken, and by a considerable margin: physicists have now built an array containing 6,100 qubits, the largest of its type and way above the thousand or so qubits previous systems contained. It's the work of scientists from the California Institute of Technology, who used cesium atoms as their qubits, trapping them in place with a complex system of lasers that acted as tweezers to keep the atoms as stable as possible. Qubits differ from the classical bits of traditional computers by exploiting what's known as a superposition: not just binary states of 1 or 0, but a spread of probabilities that allows for algorithms that can solve problems considered out of reach of conventional computing methods. Related: Quantum Advantage: A Physicist Explains The Future of Computers A lot of qubits will be needed to make quantum algorithms practical, however. One reason for these large arrays is error correction, which helps overcome the inherent fragility of the qubit by providing a surplus to double-check the machine's operation. "This is an exciting moment for neutral-atom quantum computing," says physicist Manuel Endres. "We can now see a pathway to large error-corrected quantum computers. The building blocks are in place." There was no single breakthrough that enabled this jump in qubit numbers, but rather a series of engineering advancements in many key areas – from the laser tweezers to the ultra-high (very low pressure) vacuum chamber. Stability has also been a problem for quantum computing systems. The innovations in this latest array kept qubits in a superposition state for almost 13 seconds – almost ten times longer than previous configurations had managed. What's more, individual qubits could be manipulated with 99.98 percent accuracy, establishing a significant benchmark in the programmability of quantum technology. "Large scale, with more atoms, is often thought to come at the expense of accuracy, but our results show that we can do both," says physicist Gyohei Nomura. "Qubits aren't useful without quality. Now we have quantity and quality." To make quantum computers a practical alternative to modern supercomputers, more qubits and even greater levels of stability will be required. Experts are tackling the problem from several different angles, which is why records for some types of quantum computer don't necessarily apply to others. Next, the researchers need to work on exploiting entanglement, which will enable the system to make the leap from storing information to actually processing it. Not too far in the future, we could be using these computers to discover new materials, matter, and fundamental laws of physics. "It's exciting that we are creating machines to help us learn about the Universe in ways that only quantum mechanics can teach us," says physicist Hannah Manetsch. Read more:

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