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    <title>Quantum Computing on Tenu Tech Brief</title>
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      <title>How to improve the performance of qubits: Super-fast fluctuation detection achieved</title>
      <link>https://cluster-site.onrender.com/posts/how-to-improve-the-performance-of-qubits-super-fast-fluctuation-detection-achieved/</link>
      <pubDate>Sun, 22 Feb 2026 21:00:01 +0000</pubDate>
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      <description>• Researchers at NBI used commercial tech to detect qubit state changes faster than before. • The new method captures rapid qubit fluctuations previously invisible to standard moni</description>
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      <title>Quantum Computing Faces Scaling Challenges Beyond Lab Settings</title>
      <link>https://cluster-site.onrender.com/posts/quantum-computing-faces-scaling-challenges-beyond-lab-settings/</link>
      <pubDate>Wed, 18 Feb 2026 17:08:26 +0000</pubDate>
      <guid>https://cluster-site.onrender.com/posts/quantum-computing-faces-scaling-challenges-beyond-lab-settings/</guid>
      <description>• IBM quantum expert discusses cooling system requirements. • Environmental stability remains a hurdle for deployment. • Workforce needs for practical quantum computing. • Scaling</description>
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      <title>New amplifier design promises less noise, more gain for quantum computers</title>
      <link>https://cluster-site.onrender.com/posts/new-amplifier-design-promises-less-noise-more-gain-for-quantum-computers/</link>
      <pubDate>Tue, 17 Feb 2026 16:00:26 +0000</pubDate>
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      <description>• RIKEN demonstrates low‑noise, high‑gain Josephson traveling‑wave parametric amplifier (JTWPA) for quantum computing. • JTWPA delivers microwave photonic circuit with unprecedente</description>
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      <title>Teaching machines to quiet the noise in quantum computers</title>
      <link>https://cluster-site.onrender.com/posts/teaching-machines-to-quiet-the-noise-in-quantum-computers/</link>
      <pubDate>Mon, 02 Feb 2026 06:05:00 +0000</pubDate>
      <guid>https://cluster-site.onrender.com/posts/teaching-machines-to-quiet-the-noise-in-quantum-computers/</guid>
      <description>• IIT Madras team uses machine learning to pinpoint noise sources in quantum computers. • Neural networks trained on synthetic data predict noise features with minimal accuracy los</description>
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      <title>UC Berkeley students design and test quantum chips in first-of-its-kind course</title>
      <link>https://cluster-site.onrender.com/posts/uc-berkeley-students-design-and-test-quantum-chips-in-first-of-its-kind-course/</link>
      <pubDate>Wed, 28 Jan 2026 00:09:15 +0000</pubDate>
      <guid>https://cluster-site.onrender.com/posts/uc-berkeley-students-design-and-test-quantum-chips-in-first-of-its-kind-course/</guid>
      <description>• UC Berkeley launches EE290‑Superconducting Quantum Circuits, blending theory and hands‑on design. • Students design superconducting qubit chips, then fabricate and test them in c</description>
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      <title>Theory-guided strategy expands the scope of measurable quantum interactions</title>
      <link>https://cluster-site.onrender.com/posts/theory-guided-strategy-expands-the-scope-of-measurable-quantum-interactions/</link>
      <pubDate>Thu, 24 Jul 2025 04:00:00 +0000</pubDate>
      <guid>https://cluster-site.onrender.com/posts/theory-guided-strategy-expands-the-scope-of-measurable-quantum-interactions/</guid>
      <description>• MIT proposes theory‑guided framework to measure previously invisible material properties. • Focus on electron‑phonon coupling, key to electrical, thermal, optical behavior. • Tra</description>
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      <title>Closing in on superconducting semiconductors</title>
      <link>https://cluster-site.onrender.com/posts/closing-in-on-superconducting-semiconductors/</link>
      <pubDate>Tue, 17 Jun 2025 13:00:00 +0000</pubDate>
      <guid>https://cluster-site.onrender.com/posts/closing-in-on-superconducting-semiconductors/</guid>
      <description>• Data centers use 4.4% of US energy, with 57% consumed by CPUs and GPUs. • Rising energy demands make energy‑efficient computing essential for future high‑performance systems. • S</description>
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      <title>MIT engineers advance toward a fault-tolerant quantum computer</title>
      <link>https://cluster-site.onrender.com/posts/mit-engineers-advance-toward-a-fault-tolerant-quantum-computer/</link>
      <pubDate>Wed, 30 Apr 2025 09:00:00 +0000</pubDate>
      <guid>https://cluster-site.onrender.com/posts/mit-engineers-advance-toward-a-fault-tolerant-quantum-computer/</guid>
      <description>• MIT engineers push quantum computing toward fault tolerance by enhancing photon-atom coupling. • Stronger coupling speeds up readout, critical for rapid error correction before d</description>
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      <title>Device enables direct communication among multiple quantum processors</title>
      <link>https://cluster-site.onrender.com/posts/device-enables-direct-communication-among-multiple-quantum-processors/</link>
      <pubDate>Fri, 21 Mar 2025 10:00:00 +0000</pubDate>
      <guid>https://cluster-site.onrender.com/posts/device-enables-direct-communication-among-multiple-quantum-processors/</guid>
      <description>• MIT researchers created a superconducting interconnect enabling direct communication among multiple quantum processors. • The device supports scalable all‑to‑all connectivity, el</description>
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      <title>Physicists measure a key aspect of superconductivity in &#39;magic-angle&#39; graphene</title>
      <link>https://cluster-site.onrender.com/posts/physicists-measure-a-key-aspect-of-superconductivity-in-magic-angle-graphene/</link>
      <pubDate>Wed, 05 Feb 2025 16:00:00 +0000</pubDate>
      <guid>https://cluster-site.onrender.com/posts/physicists-measure-a-key-aspect-of-superconductivity-in-magic-angle-graphene/</guid>
      <description>• Superfluid stiffness quantifies how easily electron pairs flow without resistance. • MIT and Harvard scientists directly measured this property in magic‑angle graphene. • Magic‑a</description>
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