Quantum Network Breakthrough: New Pathway to Probe Interplay Between Quantum Theory and Curved Spacetime
Quantum Network Breakthrough: New Pathway to Probe Interplay Between Quantum Theory and Curved Spacetime
2025-12-09
Quantum networks, the key technology for realizing a global quantum internet, are spearheading a new era of secure communication and quantum computer interconnection. A collaborative research team fro...
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"Tunneling" Electrons Speed Test Challenges Another Interpretation of Quantum Mechanics
"Tunneling" Electrons Speed Test Challenges Another Interpretation of Quantum Mechanics
2025-12-06
Quantum mechanics describes the unconventional properties of subatomic particles, such as their ability to exist in superpositions of multiple states (as popularized by Schrödinger's cat analogy) an...
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Increasing Randomness May Be Key to Building Stronger Quantum Computers
Increasing Randomness May Be Key to Building Stronger Quantum Computers
2025-12-05
Randomness plays a pivotal role in numerous fields—from computer science and engineering to cryptography and weather forecasting. Understanding and harnessing randomness is essential for simulating ...
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Aqarios Releases Luna v1.0 Quantum Optimization Platform Featuring FlexQAOA Algorithm
Aqarios Releases Luna v1.0 Quantum Optimization Platform Featuring FlexQAOA Algorithm
2025-12-03
On June 4, 2025, the Aqarios platform officially launched Luna v1.0, marking a significant advancement in the field of quantum optimization. Luna v1.0 introduces the FlexQAOA algorithm, dramatically e...
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University of Copenhagen Develops Tunable Quantum System, Breaking the Sensitivity Limit of Sensing
University of Copenhagen Develops Tunable Quantum System, Breaking the Sensitivity Limit of Sensing
2025-11-29
Researchers at the Niels Bohr Institute (NBI), University of Copenhagen, have developed a novel tunable quantum system that achieves sensing performance beyond the standard quantum limit by dynamicall...
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2025 Breakthrough: Quantum Entanglement Manipulation Obeys a Second-Law-Like Reversible Principle – Entanglement Battery Becomes Key Enabler
2025 Breakthrough: Quantum Entanglement Manipulation Obeys a Second-Law-Like Reversible Principle – Entanglement Battery Becomes Key Enabler
2025-11-28
More than two centuries after French physicist Sadi Carnot formulated the second law of thermodynamics, quantum information science has achieved a major advance. On July 2, 2025, an international rese...
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Australian CSIRO Team First Uses Quantum Machine Learning to Optimize Semiconductor Manufacturing
Australian CSIRO Team First Uses Quantum Machine Learning to Optimize Semiconductor Manufacturing
2025-11-27
Semiconductor manufacturing processes have long been regarded as one of the greatest challenges in modern engineering due to their requirement for extreme precision and hundreds of complex steps. Rese...
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China's First Chip-Level Post-Quantum Cryptography Card Unveiled
China's First Chip-Level Post-Quantum Cryptography Card Unveiled
2025-11-26
On July 3, Anhui Wentian Quantum Technology Co., Ltd. (hereinafter referred to as Wentian Quantum) announced that the country's first chip-level post-quantum cryptography card, jointly developed by t...
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Breakthrough in Optical Microcavities: Cholesteric Liquid Crystal Helix Enables Dynamic Photonic Control
Breakthrough in Optical Microcavities: Cholesteric Liquid Crystal Helix Enables Dynamic Photonic Control
2025-11-25
A research team from the Faculty of Physics at the University of Warsaw, the Military University of Technology, and the Institut Pascal at Université Clermont Auvergne has developed a novel method th...
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German Team Overcomes Two Major Challenges in Quantum Communication, Advancing the Technology Toward Practical Applications
German Team Overcomes Two Major Challenges in Quantum Communication, Advancing the Technology Toward Practical Applications
2025-11-24
The Leibniz Institute of Photonic Technology in Jena, Germany, in collaboration with the National Research Council of Canada and other international teams, has developed two complementary methods that...
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International Team Breaks Through the Simulation Bottleneck for Fault-tolerant Quantum Computing
International Team Breaks Through the Simulation Bottleneck for Fault-tolerant Quantum Computing
2025-11-22
The path to practical quantum computers has hit a critical obstacle: limited error-correction capability. Verifying the accuracy of quantum computations still relies on classical computer simulations,...
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International Team Successfully Simulates Zero-temperature Symmetry Breaking Using Superconducting Quantum Processor
International Team Successfully Simulates Zero-temperature Symmetry Breaking Using Superconducting Quantum Processor
2025-11-21
An international team of scientists has for the first time used a superconducting quantum processor to experimentally simulate spontaneous symmetry breaking at zero temperature, achieving a fidelity e...
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