Quantum State Generation
Quantum-state preparation across superconducting qubits, single photons, squeezed light, time-bin encoding, and entangled-state generation.
Includes: Jupyter simulators · Matched technical briefs | GitHub
Open-source interactive simulators and computational tools for quantum physics, quantum computing, quantum optics and photonics, quantum networking, materials physics, and scientific computing. Many packages include Jupyter notebooks, technical briefs, guided exercises, or other supporting educational and research resources.
Quantum-state preparation across superconducting qubits, single photons, squeezed light, time-bin encoding, and entangled-state generation.
Includes: Jupyter simulators · Matched technical briefs | GitHub
Interactive quantum superposition simulator for introductory quantum physics, classroom instruction, conceptual assessment, and measurement-based learning.
Includes: Jupyter simulator · Classroom activities · Assessment prompts · Teaching materials | GitHub
Interactive Stern–Gerlach simulator for quantum physics education and solution-architecture-based exploration of foundational quantum concepts.
Includes: Jupyter simulator | GitHub
Hybrid classical–quantum optimizer for Bell-state preparation with fidelity tracking, convergence visualization, and transparent numerical verification.
Includes: Jupyter simulator | GitHub
Interactive Bloqade Analog simulator connecting neutral-atom spacing, Rydberg interaction strength, final-state probabilities, and Rydberg-blockade leakage.
Includes: Jupyter simulator | GitHub
Quantum-optics simulator comparing Fock, superposition, coherent, and squeezed inputs using coincidence, cross-correlation, noise-reduction, and other two-mode interference observables.
Includes: Jupyter simulator | GitHub
Probabilistic double-slit simulator showing quantum interference, which-path visibility loss, and photon-count buildup from sampled detection events.
Includes: Jupyter simulator | GitHub
Interactive three-mode photonic interferometer simulator for Fock-state inputs, linear-optical interference, and photon-number-resolving output sampling.
Includes: Jupyter simulator | GitHub
Photon-conditioned squeezed-state resource mapping for continuous-variable quantum photonics, including Wigner negativity, matched photon number, and displacement-fidelity analysis.
Includes: Jupyter simulator | GitHub
Interactive Bell-state measurement simulator showing how Bell states map to two-bit measurement outcomes as a foundation for entanglement swapping and quantum networking.
Includes: Jupyter simulator | GitHub
State-based entanglement-swapping simulator with loss-free and shot-by-shot loss models for source states and Bell-state measurements.
Includes: Jupyter simulator | GitHub
Minimal entanglement-swapping benchmark spanning pure Python, QuTiP, Qiskit, IonQ-native, Quantinuum-native, and Strawberry Fields continuous-variable implementations.
Includes: Jupyter simulator · Cross-platform benchmark | GitHub
Quantum-network simulators that translate hardware specifications into network-performance and deployment decisions.
Includes: Jupyter simulators | GitHub
Auditable planning tools for quantum-network analysis, system comparison, and deployment-oriented decision making.
Includes: Jupyter planning tools | GitHub
Quantum error correction, repetition codes, hardware and measurement errors, logical error rates, software decoding, thresholds, multi-cycle reliability, and resource estimation.
Includes: Jupyter simulator · Technical brief · Guided exercises | GitHub · DOI
Wyckoff-resolved oxidation-state atlas and Python assignment workflow for Materials Project-derived crystal structures, composition-based oxidation states, and crystallographically resolved site assignments.
Includes: Python workflow · Oxidation-state atlas | GitHub
Baseline-free scenario screening for AI data-center electrical power, GPU computing capacity, and carbon-dioxide savings enabled by photonic interconnects.
Includes: Jupyter simulator | GitHub