{"podcast":{"title":"The Quark Side - Quantum Physics Podcast","slug":"the-quark-side-quantum-physics-podcast-7683146","podcast_index_feed_id":7683146,"rss_url":"https://www.spreaker.com/show/6866878/episodes/feed","website_url":"https://www.spreaker.com/podcast/the-quark-side-quantum-physics-podcast--6866878","image_url":"https://d3wo5wojvuv7l.cloudfront.net/t_rss_itunes_square_1400/images.spreaker.com/original/da0a00e1f7bfe51ffd8c6e24d8dc18e9.jpg","author":"Synthetic Universe","episode_count":60,"summary":"The Quark Side is a quantum physics podcast that explores the strange foundations of reality—from quarks and fields to spacetime, uncertainty, and the limits of knowledge. Each episode breaks down cutting-edge research and deep ideas in modern physics with clarity, rigor, and curiosity, revealing how the quantum world shapes everything we observe.","last_synced_at":"2026-07-20T18:19:34.925938+00:00","page_url":"https://stenobird.com/podcast/the-quark-side-quantum-physics-podcast-7683146"},"episode":{"title":"From Instability to Scalability: The Future of Quantum Processors","slug":"from-instability-to-scalability-the-future-of-quantum-processors","published_at":"2026-03-26T08:00:02+00:00","page_url":"https://stenobird.com/podcast/the-quark-side-quantum-physics-podcast-7683146/from-instability-to-scalability-the-future-of-quantum-processors","show_page_url":"https://stenobird.com/podcast/the-quark-side-quantum-physics-podcast-7683146","url":"https://www.spreaker.com/episode/from-instability-to-scalability-the-future-of-quantum-processors--70438236","audio_url":"https://dts.podtrac.com/redirect.mp3/api.spreaker.com/download/episode/70438236/qbitp.mp3","summary":"Researchers at the Niels Bohr Institute have developed a real-time monitoring system capable of detecting quantum computer failures almost instantly. Using FPGA processors, the team can track millisecond energy fluctuations in qubits—achieving speeds up to 100 times faster than traditional diagnostic methods. The findings reveal that even components considered stable can degrade rapidly due to microscopic material imperfections. By capturing these dynamic changes as they happen, scientists gain a deeper understanding of quantum processor behavior—an essential step toward building more reliable and scalable quantum machines. This episode includes AI-generated content.","meta_description":"Researchers at the Niels Bohr Institute have developed a real-time monitoring system capable of detecting quantum computer failures almost instantly. Usin…","key_points":[],"chapters":[],"topics":[],"duration_seconds":924,"processing_state":"not_requested","actions":[{"name":"request_transcript","method":"POST","url":"https://stenobird.com/v1/public/podcasts/the-quark-side-quantum-physics-podcast-7683146/episodes/from-instability-to-scalability-the-future-of-quantum-processors/transcription-requests","description":"Idempotently request low-priority transcript generation for this episode."},{"name":"read_markdown","method":"GET","url":"https://stenobird.com/podcast/the-quark-side-quantum-physics-podcast-7683146/from-instability-to-scalability-the-future-of-quantum-processors.md","description":"Read the agent-friendly Markdown representation of this episode resource."}]}}