Guest Post — Beyond Silicon: How AI Is Accelerating the Next Era of Computing

Ian Foley
Hub Hub

Guest Post By Ian Foley

The biggest story in AI may not be AI at all. It may be the growing realization that silicon is running out of road.

The remarkable progress of AI over the past few years has relied largely on brute force, demanding ever more silicon, electricity and infrastructure to keep the next generation of models moving forward.

That explains why so much capital is now flowing into data-centre architecture, from bigger clusters to new power infrastructure. In the short term, this is necessary, because AI companies need capacity now and the market is rewarding whoever can deliver it fastest. But we are stretching silicon, electricity grids and classical computing architectures to do work they were never designed to handle at this scale.

The more important shift is not simply toward larger server farms, but toward a post-silicon computing stack in which AI, quantum computing and biocomputing reinforce one another. Quantum computing is aimed at problems classical machines struggle with, including molecular simulation, materials discovery and cryptography. Companies such as IBM, IonQ, Rigetti Computing and PsiQuantum are attacking the problem through different hardware paths, from superconducting qubits to trapped ions and photonics. As Google Quantum AI founder Hartmut Neven said after the Willow milestone, “useful, very large quantum computers can indeed be built.”

Biocomputing represents the other frontier, replacing the logic of forcing nature into silicon with the idea of using biology itself as a computational medium. Companies such as Cortical Labs are developing neuron-based “wetware” systems, while Biomemory and Catalog are working on DNA-based data storage for ultra-dense, long-term archiving.

The future will not see AI replaced, but just harnessed differently. Where AI becomes the intelligence layer, quantum provides the simulation power for the hardest problems, and biocomputing offers density and efficiency. The future is not bigger data centres forever, but a stranger and smarter computing stack beyond silicon.

Ian Foley

Ian Foley is an entrepreneur, investor, and operator with over 20 years of experience across Silicon Valley and global tech markets. His work sits at the intersection of AI, fintech, and infrastructure, where he focuses on building and scaling companies from early stage through exit.

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MENTIONED IN THE ARTICLE

IBM
InvestorUnited States · 10001+ FTEs

IBM is an iconic technology pioneer founded in 1911 as the Computing-Tabulating-Recording Company and officially renamed International Business Machines Corporation in 1924. Beyond foundational computing, IBM possesses a deep legacy in aerospace and defense from building the guidance computers and Instrument Unit for NASA's historic Apollo missions to partnering with Airbus on CIMON, the first AI assistant on the ISS.

IonQ
InvestorUnited States · 1001-5000 FTEs

IonQ is a developer in trapped ion quantum computing founded in 2015 that actively applies its technology to the aerospace and defense sectors. The company empowers satellite-based quantum networks and quantum enabled drones to improve positioning, navigation, and timing resilience in GPS denied environments, and collaborates with industry leaders like Airbus to optimize aircraft loading.

Rigetti Computing
CompanyUnited States · 101-500 FTEs

Rigetti Computing develops integrated quantum computers and superconducting processors specialized for complex aerospace optimization and satellite communication tasks, including collaborations with the U.S. Air Force. Founded in 2013, the firm produces modular, multi-chip processors internally and provides cloud-based access for large-scale, complex simulations.

PsiQuantum
CompanyUnited States · 501-1000 FTEs

PsiQuantum is developing a utility scale fault tolerant quantum computer utilizing photonic qubits and standard semiconductor manufacturing processes. Founded in 2015, the company collaborates with aerospace partners like Airbus and Lockheed Martin on algorithms for fluid mechanics, aerodynamics, and impact modeling.

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