Quantum simulation using matrix exponentials and Lie-theoretic Trotterization. Lecture 6 from the Lie Groups with Applications series by Quantum Formalism.
-
Updated
Apr 17, 2025 - Jupyter Notebook
Quantum simulation using matrix exponentials and Lie-theoretic Trotterization. Lecture 6 from the Lie Groups with Applications series by Quantum Formalism.
Constructs a Trotterized circuit for the given Hamiltonian dynamics.
Suzuki-Trotter simulation of time evolution in a 1D XXZ spin chain, with hand-built Qiskit circuits (RXX/RYY/RZZ) for IBM Quantum hardware and an exact classical baseline for error analysis.
This is a Quantum simulation project using Qiskit to model the time evolution of a 4-qubit Ising spin chain and analyze convergence rates.
This work simulates the 1D Schrödinger equation via Qiskit circuits, modeling particle time evolution in zero and harmonic potentials. We benchmark 2 to 12 qubits against classical solutions, evaluating accuracy via expectation values and various error metrics.
To associate your repository with the trotterization topic, visit your repo's landing page and select "manage topics."