arXiv · 2104.06192
Vibrational Effects on the Formation of Quantum $W$ States
Abstract
We theoretically investigate the formation of $W$ states in a tripartite system composed of three charge qubits coupled to vibrational modes. The electromechanical coupling is responsable for second order virtual processes that result in an effective electron-electron interaction between neighbor qubits, which yields to the formation of $W$ states. Based on the Lang-Firsov transformation and perturbation theory, we analytically solve the quantum dynamics, providing a mathematical expression for the maximally entangled $W$ state. Dephasing is also taken into accout, paying particular attention on the robustness of bipartite entanglement against local dephasing processes.
Explore related subjects
Keep this discovery
H. G. Mendonça, F. M. Souza. 2021-04-13. Vibrational Effects on the Formation of Quantum $W$ States. https://arxiv.org/abs/2104.06192
Cite the original work for its findings. Save a collection to share your selection of sources.