Explore quantum algorithms and qubit behavior through interactive visualizations of superposition, entanglement, and quantum gates.
This simulator allows you to explore quantum mechanics at scale. Visualize qubit states, observe quantum gates in action, and understand how quantum algorithms can outperform classical approaches.
See the probabilities of quantum states change in real time as you apply gates like Hadamard, CNOT, and Pauli matrices.
Experiment with fundamental quantum gates and visualize how they transform qubit states through matrix operations.
Create and observe entangled qubit pairs, and see how the state of one qubit instantly affects the state of another.
Implement and debug quantum algorithms for factorization, search, and optimization to understand quantum speedup advantages.
See quantum states as probabilistic amplitudes in a Bloch sphere. Track how quantum states evolve over time.
Work with a comprehensive library of quantum gates including Hadamard, Pauli X/Y/Z, Pauli phase, and more.
Perform quantum measurements on individual or entangled qubits and see the probabilistic outcomes.
This interactive demo lets you drag and drop quantum gates to build circuits and instantly see the resulting quantum state.
Launch Interactive DemoDemonstrate quantum advantage using Shor's algorithm for integer factorization, with implications for cryptography.
Solve complex optimization problems using quantum annealing and Grover's search algorithm for faster convergence.
Try the interactive demo to explore quantum phenomena firsthand and understand how quantum algorithms could revolutionize computing.