{"podcast":{"title":"The Quantum Computing Podcast with Fexingo: Qubits, Quantum Hardware, and Future Computing","slug":"the-quantum-computing-podcast-with-fexingo-qubits-quantum-hardware-and-future-computing-7871946","podcast_index_feed_id":7871946,"rss_url":"https://feeds.fexingo.com/business/the-quantum-computing-podcast.xml","website_url":"https://www.fexingo.com/","image_url":"https://audio.fexingo.com/business/the-quantum-computing-podcast/cover.png","author":"Fexingo","episode_count":62,"summary":"This is a podcast about the current state and near-term future of quantum computing. Lucas and Luna examine the science and business of quantum hardware, from superconducting qubits to trapped ions and topological systems. They discuss the engineering challenges of error correction, the race to quantum supremacy, and the realistic timelines for commercial quantum advantage. Each episode focuses on a specific company, research paper, or technology milestone — Google's Sycamore, IBM's Quantum System One, IonQ's trapped-ion processors, or China's quantum communication network. Lucas brings a journalist's rigor to the technical details, while Luna pushes for clarity on what these advances mean for cryptography, drug discovery, optimization, and finance. This show is for listeners who want to understand quantum computing without hype — the real bottlenecks, the credible roadmaps, and the startups that might actually deliver. How close are we to a fault-tolerant quantum computer? Which industries will be transformed first? And which approaches are likely dead ends? #QuantumComputing #Qubits #QuantumHardware #QuantumSupremacy #ErrorCorrection #SuperconductingQubits #TrappedIons #Topologi…","last_synced_at":"2026-06-20T20:22:02.827480+00:00","page_url":"https://stenobird.com/podcast/the-quantum-computing-podcast-with-fexingo-qubits-quantum-hardware-and-future-computing-7871946"},"episode":{"title":"Quantum Computing Is Turning Biology Into Code","slug":"quantum-computing-is-turning-biology-into-code","published_at":"2026-06-12T11:09:35+00:00","page_url":"https://stenobird.com/podcast/the-quantum-computing-podcast-with-fexingo-qubits-quantum-hardware-and-future-computing-7871946/quantum-computing-is-turning-biology-into-code","show_page_url":"https://stenobird.com/podcast/the-quantum-computing-podcast-with-fexingo-qubits-quantum-hardware-and-future-computing-7871946","url":"https://audio.fexingo.com/business/the-quantum-computing-podcast/episode-0046.mp3","audio_url":"https://audio.fexingo.com/business/the-quantum-computing-podcast/episode-0046.mp3","summary":"In this episode, Lucas and Luna explore how quantum computing is beginning to model biological systems at the molecular level, specifically protein folding and enzyme dynamics. They discuss a recent preprint from researchers at a consortium involving IBM Quantum and the University of Tokyo that used a 127-qubit processor to simulate a small protein's energy landscape with better accuracy than classical approximations. The conversation covers why biology is a natural fit for quantum advantage — because quantum systems and biological molecules both obey the laws of quantum mechanics — and the near-term implications for drug discovery and synthetic biology. No hype, just the real signal: current qubit counts can already outperform classical methods on specific biomolecular subroutines, even if full-scale protein folding is still years away. Lucas and Luna weigh the promise against the engineering reality, including error rates and the difficulty of encoding biological data into quantum circuits. A grounded look at where quantum meets life sciences in mid-2026. #QuantumComputing #Biology #ProteinFolding #DrugDiscovery #IBMQuantum #UniversityOfTokyo #MolecularSimulation #QuantumBiology #EnzymeDynamics #BiomolecularModeling #QuantumAdvantage #ErrorCorrection #Qubits #SyntheticBiology #Technology #FexingoBusiness #BusinessPodcast #QuantumPodcast Keep every episode free: buymeacoffee.com/fexingo","meta_description":"In this episode, Lucas and Luna explore how quantum computing is beginning to model biological systems at the molecular level, specifically protein foldin…","key_points":[],"chapters":[],"topics":[],"duration_seconds":523,"processing_state":"not_requested","actions":[{"name":"request_transcript","method":"POST","url":"https://stenobird.com/v1/public/podcasts/the-quantum-computing-podcast-with-fexingo-qubits-quantum-hardware-and-future-computing-7871946/episodes/quantum-computing-is-turning-biology-into-code/transcription-requests","description":"Idempotently request low-priority transcript generation for this episode."},{"name":"read_markdown","method":"GET","url":"https://stenobird.com/podcast/the-quantum-computing-podcast-with-fexingo-qubits-quantum-hardware-and-future-computing-7871946/quantum-computing-is-turning-biology-into-code.md","description":"Read the agent-friendly Markdown representation of this episode resource."}]}}