【おまけ映像付き】3人でリラックスしてラウンドしてみた。 https://www.golftweet.com/607984/ ##QUANTUM #callaway #celebrity #MaleGolfPlayer #キャロウェイ #クアンタム #ゴルフ #石川遼
【おまけ映像付き】3人でリラックスしてラウンドしてみた。 https://www.golftweet.com/607984/ ##QUANTUM #callaway #celebrity #MaleGolfPlayer #キャロウェイ #クアンタム #ゴルフ #石川遼
Researchers demonstrated scalable quantum photonics networks using integrated optical components and advanced error control, moving closer to large-scale optical quantum computing and communication systems with reliable multi-node connectivity.
#Quantum #QuantumComputing #technology #Science
🔗 Discover more: https://www.nature.com/articles/s41566-025-01834-7#:~:text=Quantum%20optics-,Scaling%20quantum%20photonics%20networks,-Yun%2DRu%20Fan
The Future of Quantum Computing and AI - Scott Aaronson
https://peertube.futo.org/videos/watch/80e7f60f-a3ad-4af4-9453-fc06fc50cf5a
🔍 Get ready for a deep dive into quantum tech! FWMedia kicks off its new series, FW PERSPECTIVES, featuring experts Fanny Bouton and Olivier Ezratty. They'll unpack the real impacts of 2025 on quantum innovation. How is it shaping industries and policies? #tech #quantum https://t.co/kZgJhJS16X on https://twitter.com/AcerboLivio/status/2021329054557683813
IBM predicts 2026 will be the year quantum computers outperform classical ones.
Reality check: This won't speed up your CRM or website. Quantum advantage applies to ultra-specific problems like drug discovery.
But here's the play: start learning quantum principles NOW. When practical applications emerge in 5-7 years, you'll be ready.
The entrepreneurs who understood cloud computing in 2005 built the next decade's unicorns.
Researchers found that a simple chemical tweak in a promising quantum material can control exotic quantum states vital for future quantum computers. Adjusting element ratios helps push the material into a topological superconducting phase more easily.
📣Contribute to shape the future of #gravimetry in Europe!
First #𝗘𝗤𝗨𝗜𝗣-𝗚 𝗘𝗨-𝘄𝗶𝗱𝗲 𝗶𝗻-𝗽𝗲𝗿𝘀𝗼𝗻 𝘄𝗼𝗿𝗸𝘀𝗵𝗼𝗽🇪🇺
📅3-5 June, 2026
📍Potsdam, Germany
𝘙𝘦𝘨𝘪𝘴𝘵𝘳𝘢𝘵𝘪𝘰𝘯 𝘯𝘰𝘸 𝘰𝘱𝘦𝘯!
👉https://events.spacepole.be/event/268/
Researchers at Stanford developed a new method to measure energy dissipation in nanoscale systems, improving understanding of heat loss and efficiency in tiny devices. This could help optimize quantum and nanoelectronics technologies.
Is quantum computing really a threat to Bitcoin?
A new report shows only a small number of wallets are at risk - but some, like Michael Saylor, are already preparing. We explain the issue here: https://auriccrypto.com/btc/quantum-computing-and-bitcoin-how-serious-is-the-risk/
New #Paper published in Quantum: Theory of quantum error mitigation for non-Clifford gates
New #Paper published in Quantum: On Certified Randomness from Fourier Sampling or Random Circuit Sampling
#Quantum #Programming is the process of designing sequences of instructions, called quantum circuits, to manipulate qubits through phenomena like superposition and entanglement.
Unlike classical code, it utilizes specialized frameworks like Qiskit or Cirq to solve complex problems in cryptography and material science.
https://knowledgezone.co.in/learning/topics/Quantum-Programming;course=Quantum-Computing
Relearning #Programming to Ride the Coming #Quantum #Tsunami : Medium
Innovative CAR-T therapy destroys cancer cells without dangerous side effects : Nature
10 #Breakthrough #Technologies : Tech Review
Latest #KnowledgeLinks
Physicists pushed thousands of atoms into a Schrödinger’s cat–like quantum state, showing groups of particles behaving in coherent superposition. This brings macroscopic quantum effects closer to reality and deepens understanding of quantum behavior.
Researchers achieved large-scale analogue quantum simulation using arrays of atom “dots,” allowing them to model complex many-body systems with high control. This advance helps study phenomena that are otherwise impossible to compute classically.
Researchers propose a new architecture that could enable 100,000-qubit quantum computers, using improved connectivity and error correction to scale far beyond current systems — a major leap toward truly large-scale quantum machines.