First realization of the ν=1/3 fermionic Laughlin state on a 16-qubit IonQ trapped-ion processor via Hamiltonian variational ansatz and symmetry-verification error mitigation, matching exact diagonalization.
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A 64-qubit trapped-ion system using BF-DCQO optimizes lattice protein folding Hamiltonians for six peptides, reaching classical reference energies in multiple cases after hybrid post-processing.
Trapped-ion quantum fine-tuning of AI models shows linear energy scaling and 24% better classification error than classical logistic regression or SVM baselines, with a projected energy break-even at 34 qubits.
A compilation scheme called Parity Twine achieved a 50-qubit unitary QFT with process fidelity ≈1e-2 on IBM Heron r3, and up to 52 qubits with plurality voting, surpassing prior unitary QFT demonstrations.
Hybrid quantum-classical graph partitioning inside LS-DYNA reduces amortized wall-clock time for large FEA simulations by 5.9-14.6 percent on meshes up to 35 million elements.
citing papers explorer
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Realization of fermionic Laughlin state on a quantum processor
First realization of the ν=1/3 fermionic Laughlin state on a 16-qubit IonQ trapped-ion processor via Hamiltonian variational ansatz and symmetry-verification error mitigation, matching exact diagonalization.
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Protein folding on a 64 qubit trapped-ion hardware via counterdiabatic quantum optimization
A 64-qubit trapped-ion system using BF-DCQO optimizes lattice protein folding Hamiltonians for six peptides, reaching classical reference energies in multiple cases after hybrid post-processing.
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Measuring Accuracy and Energy-to-Solution of Quantum Fine-Tuning of Foundational AI Models
Trapped-ion quantum fine-tuning of AI models shows linear energy scaling and 24% better classification error than classical logistic regression or SVM baselines, with a projected energy break-even at 34 qubits.
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Demonstrating Record Fidelity for the Quantum Fourier Transform
A compilation scheme called Parity Twine achieved a 50-qubit unitary QFT with process fidelity ≈1e-2 on IBM Heron r3, and up to 52 qubits with plurality voting, surpassing prior unitary QFT demonstrations.
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End-to-end performance of quantum-accelerated large-scale linear algebra workflows
Hybrid quantum-classical graph partitioning inside LS-DYNA reduces amortized wall-clock time for large FEA simulations by 5.9-14.6 percent on meshes up to 35 million elements.