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May 26, 20260 citationsOpen Access

Vortex Quantum Core Architecture

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FPFrancis Procaccia

Key Points

  • This research aims to present a new architecture for scalable, fault-tolerant quantum computing.
  • Utilized a diamond-enhanced 2D moiré Kitaev spin liquid platform.
  • Implemented thermodynamic simulations including exact diagonalization and tensor networks.
  • Achieved cooling down to 50 mK using a hybrid caloric cascade.
  • Confirmed thermodynamic stability and topological order within the architecture.
  • Demonstrated disorder robustness and high signal-to-noise ratio (SNR) parity readout.
  • Provided a validated pathway to practical fault-tolerant quantum computing.

Abstract

Vortex Quantum Core Architecture A diamond-enhanced 2D moiré Kitaev spin liquid platform for fault-tolerant, utility-scale topological quantum computing. The Vortex Quantum Core is a fully integrated, rack-mountable topological quantum processor that overcomes the limitations of 1D Majorana nanowire architectures. It uses moiré tuning in a rare-earth chalcohalide bilayer to stabilize a gapped chiral Kitaev spin liquid hosting non-Abelian Ising anyons, enabling native 2D strain-gated braiding. The monolithic diamond substrate provides mechanical caging, ultra-high thermal conductivity, and optical transparency, while a hybrid caloric cascade achieves fluid-free cooling to 50 mK. Comprehensive simulations (exact diagonalization, tensor networks, and stochastic DCE readout) confirm thermodynamic stability, topological order, disorder robustness, and deterministic high-SNR parity readout. This architecture delivers a scalable, simulation-validated pathway to practical fault-tolerant quantum computing.

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Cite This Study

Francis Procaccia (2026) studied this question.

synapsesocial.com/papers/6a153a2eb5d9c58d83e8cf9ehttps://doi.org/10.5281/zenodo.20360324
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