Qelm - Quantum Enhanced Language Model
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Updated
Oct 6, 2026 - Python
Qelm - Quantum Enhanced Language Model
Proofs and reproducible certificates for geometric conditions that yield zero optimized single-use coherent information but positive quantum capacity in flagged qubit channels with noisy measurement records, including a certified eight-use witness.
Python framework for designing & analyzing superconducting quantum chips. Lite-by-default, headless-friendly, EDA-grade.
Full n-qubit complex statevector simulator supporting Hadamard, CNOT, Phase, and Pauli gates with unitary evolution
Full n-qubit complex statevector simulator supporting Hadamard, CNOT, Phase, and Pauli gates with unitary evolution
OQubit is an open-source Python quantum simulator designed for building and exploring qubits, statevectors, quantum circuits, gates, measurements, and quantum algorithms.
The tool analyzes actual data flows to map risk levels and geometrically estimate the time gaps for breaking encryption between classical supercomputers and quantum cracking algorithms (Shor and Grover).
Simple module allowing to record animations to trace changes in qubit states for arbitrary quantum circuits.
KLayout Python library for integrated quantum circuit design.
An efficient Python-based framework for implementing qubit subspace methods, reducing the resource requirements for near-term quantum simulations.
An enterprise-grade AI system that translates natural language into quantum computations safely under an AI Governance framework.
SSZ-Qubits: Segmented Spacetime Framework for Quantum Computing - Applying SSZ theory to analyze and minimize gravitational effects on qubit systems
Simulate quantum states, gates, and circuits using pure NumPy. Includes examples for entanglement, superdense coding, and teleportation.
An open-source control library for electrostatically confined spin-qubits developed by HRL Quantum and based on the Quantum Instrumentation Control Kit (QICK).
A pure Python implementation of Shor's quantum factorisation algorithm using classical matrix operations to simulate quantum circuits. This educational project demonstrates the core concepts of Shor's algorithm without requiring quantum computing frameworks like qiskit, making it accessible for learning how the quantum algorithm works step-by-step.
world's first quantum internet powered by consumer WiFi, utilizing 445 real qubits from IBM quantum computers across 4 countries and 3 continents. This project enables secure quantum communications and operations through entanglement, measurement, and teleportation of quantum states, and users can even run their own quantum internet node
Bridging Ai with blockchain interaction. Utilizing Deepseek-VL2 and RIG vectors built on Solana.
FeynmS is a Python library for simulation and experimentation with quantum computing. It provides tools for creating and manipulating quantum circuits, implementing quantum algorithms, and visualizing results.
In this project, Quantum Machine Learning (QML) is applied to synthetic data to perform binary classification using a variable amount of simulated qubits on classical computer hardware.
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