• Shor’s Algorithm and the Cryptographic Threat Ahead
    2026/09/09
    This episode unpacks Peter Shor’s polynomial‑time factorization algorithm, tracing how it turns modular arithmetic into a period‑finding problem solved by quantum superposition and interference. We examine the practical engineering barriers—error‑correction overhead, circuit depth, and qubit lifetimes—that keep a real‐world attack many years away, while exploring post‑quantum strategies and the business and policy responses that are already unfolding. Learn more about your ad choices. Visit megaphone.fm/adchoices
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    14 分
  • Scaling to 100 000 Logical Qubits: The Physics and Economics Behind a New Quantum Supercomputer
    2026/09/09
    This episode dissects what it takes to build a fault‑tolerant system with one hundred thousand logical qubits, covering the massive physical‑qubit overhead, cryogenic and control infrastructure, algorithmic gains in chemistry, materials, optimization, and cryptanalysis, as well as the geopolitical and economic implications that follow. Learn more about your ad choices. Visit megaphone.fm/adchoices
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    10 分
  • Harvest Now, Decrypt Later: The Real Threat of Quantum Cryptanalysis
    2026/09/09
    This episode explores how attackers can now store encrypted data and decrypt it later with quantum computers, turning future cryptographic threats into an immediate risk. We unpack Shor’s algorithm, the logical‑qubit requirements for breaking RSA, and why industry guidance is moving toward aggressive post‑quantum migration timelines. The discussion also covers risk assessment models, storage economics, and what a proactive post‑quantum strategy looks like in practice. Learn more about your ad choices. Visit megaphone.fm/adchoices
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    15 分
  • From Surfaces to Logic: How Materials Science Shapes Better Qubits
    2026/09/09
    This episode dives into how microscopic surface defects, oxide layers, and isotopic purity directly affect qubit coherence and gate fidelity in superconducting and spin‑based devices. It traces the journey from improved tantalum resonators and silicon‑28 purification to the scaling implications for fault‑tolerant error correction, highlighting real laboratory gains and the engineering trade‑offs that still lie ahead. Learn more about your ad choices. Visit megaphone.fm/adchoices
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    14 分
  • Quantum Cloud Pricing Demystified: The True Cost of One Minute on a Fault‑Tolerant Quantum Computer
    2026/09/09
    This episode digs into the economics of quantum cloud services, showing how logical qubit usage, magic‑state distillation overheads, and queue policies shape the price of a one‑minute fault‑tolerant run. It breaks down provider models from per‑shot to logical‑qubit‑hour billing, reveals the hidden hardware capital needed for fault tolerance, and discusses what this means for businesses planning quantum cloud adoption. Learn more about your ad choices. Visit megaphone.fm/adchoices
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    15 分
  • Logical Qubit Economics: From Cryogenic Costs to Real-World Viability
    2026/09/09
    This episode digs into the hidden costs of building a single reliable quantum logical qubit, examining how cryogenic infrastructure, error‑correction overhead, and hardware choice drive the economics that will decide when practical quantum computing becomes viable. It compares superconducting, trapped‑ion, photonic and silicon spin platforms, highlighting their differing physical requirements and how those translate into lifetime costs and business implications. Learn more about your ad choices. Visit megaphone.fm/adchoices
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    17 分
  • Supercomputers vs Quantum Accelerators: Complementary Paths in Extreme Computing
    2026/09/09
    In this episode we dissect the contrasting worlds of classical supercomputers and emerging quantum accelerators, exploring the physics that underpins each, how their hardware architectures differ, and why hybrid systems—where GPUs and QPUs coexist—represent the most realistic near‑term path to new scientific and commercial breakthroughs. Learn more about your ad choices. Visit megaphone.fm/adchoices
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    13 分
  • Quantum Data Centers of Tomorrow: Integrating QPUs into a Heterogeneous Fabric
    2026/09/09
    This episode dives into how next‑generation data centers blend classical CPUs, GPUs and AI chips with superconducting qubit processors, photonic interconnects and quantum networking to create a truly heterogeneous architecture. We examine the cryogenic requirements, error‑correction infrastructure, scheduling orchestration, energy tradeoffs, and the practical limits that shape the role of quantum machines in the cloud. Learn more about your ad choices. Visit megaphone.fm/adchoices
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    16 分