Exercises in architecture and programming of quantum computers with cirq , qiskit, tket , projectq and pyquil forest
-
Updated
Nov 9, 2021 - Jupyter Notebook
Exercises in architecture and programming of quantum computers with cirq , qiskit, tket , projectq and pyquil forest
AstraQPU is a virtual QPU runtime for architecture aware scheduling, control, and hardware in the loop execution. It models QPU architecture specs, native instruction scheduling, timing constraints, telemetry, and serial MCU backed control planes for prototyping quantum systems software. Hope you find it interesting :)
Topology-aware modular quantum layout and abstract routing optimizer for Qiskit. Reduces communication cost and inter-chip hops on multi-chip hardware graphs.
Reversible 1-bit quantum ALU implemented in Qiskit with opcode-controlled arithmetic and logic operations, validated on simulators and IBM Quantum hardware.
Quantum Field Theory security framework using Feynman diagrams for dynamic ISO management. Implements physics-based isolation where attacks cause decoherence, not direct compromise. Three-state architecture: Closed (Ụzọ Mechiri), Open (Ụzọ Mepere), Protected (Ụzọ Nchekwa). When quantum systems fail, build your own.
Structural cohesion in quantum circuits under feedback control. Explore feedback-driven structural persistence in quantum systems — modeling cohesion without matter.
⚛️ Build cutting-edge quantum supercomputers with Quantum OS, a robust framework supporting multiple backends and advanced error correction for improved performance.
Add a description, image, and links to the quantum-architecture topic page so that developers can more easily learn about it.
To associate your repository with the quantum-architecture topic, visit your repo's landing page and select "manage topics."