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Columbia’s quantum research secured about $62 million in grants

Dr. Donovan
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⚡ Quantum Brief
Columbia researchers have trapped over 1000 atoms using optical tweezers and metasurfaces, a record number that allows them to potentially capture hundreds of thousands more for advancements in neutral-atom quantum computing. This achievement is part of a year of substantial progress detailed in the Columbia Quantum Initiative Impact Report, which highlights $62 million in active research grants currently funding 31 projects. With 266 research papers published, half authored as senior contributions, Columbia demonstrates sustained investment and leadership in quantum science.
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Columbia researchers have trapped over 1000 atoms using optical tweezers and metasurfaces, a record number that allows them to potentially capture hundreds of thousands more for advancements in neutral-atom quantum computing. This achievement is part of a year of substantial progress detailed in the Columbia Quantum Initiative Impact Report, which highlights $62 million in active research grants currently funding 31 projects. With 266 research papers published, half authored as senior contributions, Columbia demonstrates sustained investment and leadership in quantum science. A research panel stated during a visit to Capitol Hill that universities will be critical to American leadership in this rapidly advancing field. $62 million Secured for Quantum Research & Development Columbia’s quantum research secured about $62 million in active research grants during the last academic year, demonstrating sustained financial investment in the rapidly evolving field. These 31 grants currently fund a broad spectrum of projects, enabling continued exploration of quantum phenomena and technologies across multiple disciplines within the university. The funding supports 37 core faculty members whose expertise spans quantum physics, chemistry, photonics, materials science, and quantum computing, fostering a collaborative environment for innovation. This achievement positions the team to potentially scale up these arrays considerably, with the capability of capturing hundreds of thousands more atoms in future experiments. Beyond expanding computational capacity, the research also contributed to six new patents filed and the launch of three start-up companies spun out from Columbia’s quantum research programs; this entrepreneurial activity underscores the initiative’s commitment to translating fundamental discoveries into practical applications. Columbia’s impact extends beyond its campus; the university is actively connected to the New York Quantum Network, which will leverage entangled photons for instantaneous communication across a 70-mile span from Long Island to Morningside Heights. This network connectivity is crucial for distributed quantum computing and secure communication protocols. Columbia representatives recently presented to a research panel on Capitol Hill, emphasizing the vital role universities will play in maintaining American leadership in quantum technologies. This prolific output builds upon a century of quantum science research at Columbia, marked in 2025, and includes investigations into areas like coherent ferrons, polarization waves with implications for quantum technologies and telecommunications, and the properties of superfluids. The initiative’s diverse portfolio of research, coupled with robust funding and a growing network of collaborators, solidifies Columbia’s position as a leading center for quantum innovation. Source: https://quantum.columbia.edu/news/columbia-quantum-initiative-impact-report-july-2025-june-2026 Stay currentSee today’s quantum computing news on Quantum Zeitgeist for the latest breakthroughs in qubits, hardware, algorithms, and industry deals. Tags: Dr. Donovan Dr. Donovan is a futurist and technology writer covering the quantum revolution. Where classical computers manipulate bits that are either on or off, quantum machines exploit superposition and entanglement to process information in ways that classical physics cannot. Dr. Donovan tracks the full quantum landscape: fault-tolerant computing, photonic and superconducting architectures, post-quantum cryptography, and the geopolitical race between nations and corporations to achieve quantum advantage. The decisions being made now, in research labs and government offices around the world, will determine who controls the most powerful computers ever built. Latest Posts by Dr. Donovan: WarpSpeed Says its AI cuts quantum encryption cracking cost sharply August 13, 2026 Gemma models surpass 900 million downloads, Google says August 13, 2026 UChicago PME insight boosts potential of quantum biosensors August 13, 2026

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Source: Quantum Zeitgeist

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