Quantum computing simulation
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Updated
Sep 4, 2026 - C++
Quantum computing simulation
Single qubit exact synthesis over Clifford + T algorithm in Java
General purpose toolbox for simulating quantum versions of game theoretic models. Quantum versions of models that have been handeled are: Penny Flip Game, Prisoner's Dilemma, Two Person Duel, Battle of the Sexes, Newcomb's Paradox, Hawk and Dove Game and Monty Hall Problem.
Teaching of Quantum Machine Learning with Qiskit
A domain specific programming language for simulating Quantum Computing Algorithms.
Full implementation of Shor factoring algorithm with Qiskit. Author: Benjamin Assel
Repository containing a collection of quantum circuits
Implementing the Grover and Deutsch_Jozsa quantum search algorithms, best in world!
Quantum Computing with Qiskit, Cirq and Q#.
A hands-on workshop repository featuring Qiskit-based quantum computing exercises tailored for the LHCb physics community. Includes beginner-friendly notebooks on Qiskit fundamentals, Deutsch-Jozsa, QML, QAOA for Max-Cut, and Grover’s algorithm, with step-by-step explanations and simulations. Ideal for physicists exploring quantum algorithms.
One matrix-free spectral primitive for an operator's whole spectral world — densities, moments, free convolution, pseudospectra, the Brown measure, dequantization diagnostics. Spans 18+ fields of math & physics. pip install resona
IBM Qiskit Global Summer School: The Past, Present and Future of Quantum Computing, Simulate an Oxygen molecules and Nitrogen molecules, using quantum computers, by Mauro Risonho de Paula Assumpção
My first quantum computing notebook with IBM Qiskit, using Statevector simulations.
Repository for the paper "Quantum Logic Operations and Graph Coloring".
🚀 Learn quantum computing with Qiskit! Comprehensive tutorials, examples, and algorithms for beginners. Features Bell states, quantum teleportation, Grover's algorithm, and interactive Jupyter notebooks. Perfect for students and developers entering the quantum world.
Operationalizing Cognitional Mechanics (CM) on classical hardware. Proving that non-commutativity is a structural resource, not just a physical phenomenon.
A hands-on Qiskit workshop for the LHC physics community. Covers gate fundamentals, Deutsch-Jozsa, Grover's, QAOA (Max-Cut), HHL, QML (with Pennylane), plus CHSH/Bell inequality tests, noise modeling, and transpiler routing, all with step-by-step notebooks and simulations. Built for physicists exploring quantum algorithms hands-on.
Muhammad Mudassar | Physics Researcher | Quantum Computing, QAOA, VQE, Hamiltonian Simulation & Quantum Optimization
A project visualizing and simulating Grover's Algorithm using NumPy and Qiskit, featuring an interactive Jupyter Notebook UI
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