Simulating spin dynamics with quantum computers
arXiv:2207.10567 · doi:10.1119/5.0112717
Abstract
IBM quantum computers are used to simulate the dynamics of small systems of interacting quantum spins. For time-independent systems with fewer than three spins, we compute the exact time evolution at arbitrary times and measure spin expectation values and energy. It is demonstrated that even in such small systems, one can observe the connection between conservation laws and symmetries in the model. Larger systems require approximating the time-evolution operator, and we investigate the case of spins explicitly. While it is shown to be unfeasible to use such devices to probe such larger systems without more advanced algorithms or reliable error correction, we demonstrate that the quantum circuit simulator is an easy-to-use method for studying spin dynamics in systems with ) spins. The computations presented provide an interesting experimental component to the standard treatment of quantum spin in an undergraduate quantum mechanics course.
13 pages, 9 figures
References in corpus (16)
- Quantum Computing in the NISQ era and beyond
- Nonequilibrium dynamics of closed interacting quantum systems
- The ITensor Software Library for Tensor Network Calculations
- Quench dynamics and relaxation in isolated integrable quantum spin chains
- Building logical qubits in a superconducting quantum computing system
- Optimal Quantum Circuits for General Two-Qubit Gates
- Scalable mitigation of measurement errors on quantum computers
- Simulating quantum many-body dynamics on a current digital quantum computer
- Quantum Computer Systems for Scientific Discovery
- Student understanding of quantum mechanics at the beginning of graduate instruction
- Exact Ising model simulation on a quantum computer
- Algebraic Compression of Quantum Circuits for Hamiltonian Evolution
- Transport in one-dimensional integrable quantum systems
- Quantum Simulation on Noisy Superconducting Quantum Computers
- Calculating spin correlations with a quantum computer
- Simulating single-spin dynamics on an IBM five-qubit chip