Edukaizen
Menu
News
Hubbard
Hubbard 1D
Part 1: 1D Hubbard model
Part 2: Snake layout and fSWAP
Part 3: Qiskit and Fire Opal
Part 4: 120-qubit run
Part 5: Time-to-answer
Part 6: Tensor networks
Part 7: Majorana propagation
Part 8: Reading heatmaps
Part 9: Digital vs cold-atom labs
Part 10: Official Monoprop benchmark
Hubbard 2D
Part 1: 1D to 2D
Part 2: Cuprates
Part 3: 3×3
Part 4: Time
Part 5: 4×4
Part 6: 6×6 Fez
2D Local Quantum Advantage
Deel 1: Doel en budget
Deel 2: Fermionmodel
Deel 3: Mapping en diepte
Deel 4: Pilots en shots
Deel 5: Foutmitigatie
Deel 6: 6×6-resultaten
Deel 7: Circa 20x
Deel 8: Google en Bonsai
Deel 9: Volgende stap
Hadron
Part 1: Hadron on a quantum processor
Part 2: Quarks and confinement
Part 3: SU(2) and LSH
Part 4: Hamiltonian and circuit
Part 5: Fire Opal
Part 6: Classical simulations
Part 7: Quantum advantage
Black Hole OLE
Part 1: What we ran
Part 2: How OLE works
Part 3: Fire Opal and Kingston
Part 4: The tensor-network challenge
Part 5: Hawking and scrambling
Part 6: What the result proves
Part 7: Local toy model
Part 8: QGSS26 compatibility
Random Graph
Start here
Part 1: Theory
Part 2: Circuit
Part 3: Qiskit
Part 4: Complexity
Part 5: Verification
Part 6: Workflow
Part 7: Conclusion
Floquet-Ising
Part 1: Floquet physics
Part 2: Ising cycle
Part 3: Two-qubit toy model
Part 4: Oscillation and entanglement
Part 5: Noise and error mitigation
Part 6: Toward 51 qubits
XXZham
Part 1: The XXZ model and imbalance
Part 2: From dynamics to a quantum circuit
Part 3: The classical simulation methods
Part 4: Error mitigation on real hardware
Part 5: Results and the classical comparison
Part 6: Original study and next steps
Work
QOS QML
Tutorial: UMI counts to a four-qubit circuit
Part 1: The QML task
Part 2: QOS theory
Part 3: Gene expression to 40 qubits
Part 4: JAX to hardware
Part 5: Readout and classifier
Part 6: 40-qubit result
Part 7: Route to quantum advantage
Part 8: 60-qubit result
Quantum Gold
Part 1: Why gold is a relativistic quantum problem
Part 2: Why the 2025 gold VQE study stalled
Part 3: From QE and spin–orbit coupling to Qiskit
Part 4: Twelve gold spinor modes on four qubits
Part 5: The 24-qubit route: an active window for transport
Part 6: 24 qubits on IBM and with Fire Opal
Part 7: The road to quantum advantage for gold
Part 8: 24 gold spinor modes on IBM with ZNE-PEA
Part 9: Forced gold colour on 56 qubits
HaPPY Gravity
Part 1: Gravity as a phase gate
Part 2: Bosons and convergence
Part 3: The dynamic HaPPY benchmark
Part 4: The N=145 classical audit
Part 5: MPS and Majorana baselines
Part 6: PEA/ZNE and the decisive test
Fibonacci Anyons
Part 1: Fusion and braiding
Part 2: The 3/5/9-qubit ladder
Part 3: Why nine qubits were too deep
Part 4: Structure-aware simplification
Part 5: IBM hardware diagnostic
Part 6: Results and open questions
Advantage List
Contact
Menu
Simulate two slit experiment