Pretty good quantum state transfer on isotropic and anisotropic Heisenberg spin chains using engineered couplings
Pablo Serra, Alejandro Ferrón, Omar Osenda · arXiv (Cornell University) · 2021
Using a global optimization algorithm, interchange coupling distributions are obtained for chains of quantum spins. The couplings give the magnitude of the interaction between the spins of the chain, both chains with Heisenberg Hamiltonian and XXZ type anisotropic Hamiltonian are considered. These couplings allow the chains to be used as channels to transmit quantum states according to the simplest transmission protocol. It is analyzed under which conditions it is possible to obtain very high transmission fidelities, both as a function of the arrival time and the maximum intensity allowed for the couplings. Special emphasis is placed on finding coupling sets that allow fast transmission, with short arrival times on the order of $N$, where $N$ is the number of spins in the chain. The stability of the chains as transmission channels is analyzed also when the couplings are subject to static disorder. Finally it is shown that the transmission fidelity at different arrival times shows scaling properties.