Master equation approach to the three-state open Majorana model
arXiv:1904.10862 · doi:10.1103/PhysRevA.100.053407
Abstract
The three-state Majorana model in the presence of dissipation is considered. Different models of system-environment interaction are explored, ranging from situation where dissipation is the main effect to regimes where dephasing is mainly produced. It is shown that the detrimental effects of the noise are stronger in the presence of dissipation than in the presence of dephasing. The role of temperature is also discussed.
References in corpus (15)
- Analytically solvable driven time-dependent two-level quantum systems
- Dissipative Landau-Zener transitions of a qubit: bath-specific and universal behavior
- Gauging a quantum heat bath with dissipative Landau-Zener transitions
- Integrable time-dependent quantum Hamiltonians
- Fast quantum noise in Landau-Zener transition
- Degenerate Landau-Zener model: Exact analytical solution
- Constraints on scattering amplitudes in multistate Landau-Zener theory
- Landau-Zener transitions in an open multilevel quantum system
- Multistate Landau-Zener models with all levels crossing at one point
- Three-Level Landau-Zener Dynamics
- Detuning-induced robustness of a three-state Lanzau-Zener model against dissipation
- Three-state Landau-Zener model in the presence of dissipation
- Dynamics of a two-state system through a real level crossing
- Interaction-free evolution in the presence of time-dependent Hamiltonians
- Steepest Entropy Ascent for Two-State Systems with Slowly Varying Hamiltonians