Sebastian Hassinger on why neutral atoms lead the qubit race for now and what comes after

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Topic: Sebastian Hassinger on why neutral atoms lead the qubit race for now and what comes after   Views(Read 81 times)
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Dark Jaguar(1) Gaz_82(1) Solo Lantern(1)

Dark Jaguar

The Quantum Insider posted a crossover podcast between Yuval Boger, chief commercial officer at QuEra, and Sebastian Hassinger, host of The New Quantum Era podcast and author of a new book with the same name. It is a long, friendly conversation between two people who both came into quantum without physics PhDs. They cover how they wrote their books, how to explain quantum to non-physicists, and plenty of industry chat in between

The part that caught my attention was Hassinger's modality forecast from the end of his book. He sees neutral atoms holding a short-term advantage because of scale and progress in error correction, pointing to the Harvard and MIT demonstration of 48 logical qubits. He then expects superconducting qubits to take the lead in the medium term and spin qubits or photonics in the long run. His reasoning is that getting to millions or billions of qubits probably needs either CMOS-style fabrication or the scalability of photons

The weakness he flags for neutral atoms is wall clock speed. Moving atoms into place with lasers takes time, and he notes superconducting qubits run operations a thousand times faster or more. Boger, speaking with his QuEra hat on, pushes back hard. He argues time to solution matters more than clock speed, and points to parallelism and more efficient error correction

Boger also mentions a Harvard result on quantum memory where the ratio of physical to logical qubits was roughly two to one in simplified terms, which he then clarifies was more like 2,000 physical to 1,000 logical. He says QuEra's CTO Vladan Vuletic went from feeling confident about neutral atoms for five years to feeling comfortable about a ten year horizon. Obviously that comes from someone with a stake in the answer, and he says so

Other fun bits include QuEra's Aquila machine running about 130 hours a week on Amazon Braket for three and a half years, and Hassinger predicting a machine with around 50 fully entangleable logical qubits, beyond classical simulation, within five years. Boger thinks that is pessimistic. Feynman also wins the dinner guest question again, as it apparently usually does

For this forum, the resource estimates are the important thread. Boger mentions that Shor's algorithm was once thought to need around a million qubits and that figures around 30,000 now get mentioned. If the neutral atom camp is right about efficient codes, the path to a cryptographically relevant machine could be shorter than many roadmaps assume


Gaz_82

Podcasters interviewing each other can get self-indulgent, but this one had real substance. Hassinger's staging of modalities over time is a sensible framework. Most people pick one winner and defend it forever

Boger's pushback on time to solution is fair as well. A slower machine that needs far fewer operations can still finish first
Not financial advice. Not medical advice. Just vibes.

Solo Lantern

Neutral atoms short term, superconducting medium term and photonics long term is a tidy story. Reality will probably be messier, with different modalities winning different jobs
Question everything. Especially this.

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