QuTiP: Quantum Toolbox in Python
5.1
  • Frontmatter
  • Installation
  • Users Guide
    • Guide Overview
    • Basic Operations on Quantum Objects
    • Manipulating States and Operators
    • Using Tensor Products and Partial Traces
    • Superoperators, Pauli Basis and Channel Contraction
    • Time Evolution and Quantum System Dynamics
      • Introduction
      • Dynamics Simulation Results
      • Lindblad Master Equation Solver
      • Monte Carlo Solver
      • Krylov Solver
      • Stochastic Solver
      • Solving Problems with Time-dependent Hamiltonians
      • Solver Class Interface
      • Bloch-Redfield master equation
      • Floquet Formalism
      • Monte Carlo for Non-Markovian Dynamics
      • Setting Options for the Dynamics Solvers
      • Computing propagators
    • Environments of Open Quantum Systems
    • Hierarchical Equations of Motion
    • Solving for Steady-State Solutions
    • Permutational Invariance
    • Two-time correlation functions
    • Plotting on the Bloch Sphere
    • Visualization of quantum states and processes
    • Saving QuTiP Objects and Data Sets
    • Generating Random Quantum States & Operators
    • QuTiP settings
    • Environment settings
    • Modifying Internal QuTiP Settings
    • Measurement of Quantum Objects
    • Quantum Optimal Control
  • API documentation
  • Change Log
  • Developers
  • Development Documentation
  • Bibliography
  • Copyright and Licensing
QuTiP: Quantum Toolbox in Python
  • Users Guide
  • Time Evolution and Quantum System Dynamics

Time Evolution and Quantum System Dynamics

  • Introduction
  • Dynamics Simulation Results
    • The solver.Result Class
    • Accessing Result Data
    • Multiple Trajectories Solver Results
  • Lindblad Master Equation Solver
    • Unitary evolution
    • Non-unitary evolution
    • The Lindblad Master equation
  • Monte Carlo Solver
    • Introduction
    • Monte Carlo in QuTiP
    • Distributed Simulations Using MPI
  • Krylov Solver
    • Introduction
    • Krylov Solver in QuTiP
  • Stochastic Solver
    • Stochastic Schrodinger Equation
    • Stochastic Master Equation
    • Run from known measurements
  • Solving Problems with Time-dependent Hamiltonians
    • Time-Dependent Operators
    • Qobjevo
    • Coefficients
    • Working with pulses
  • Solver Class Interface
    • Reusing Hamiltonian Data
    • Stepping through the run
  • Bloch-Redfield master equation
    • Introduction
    • Brief Derivation and Definitions
    • Bloch-Redfield master equation in QuTiP
    • Time-dependent Bloch-Redfield Dynamics
  • Floquet Formalism
    • Introduction
    • Floquet theory for unitary evolution
    • Floquet theory for dissipative evolution
  • Monte Carlo for Non-Markovian Dynamics
  • Setting Options for the Dynamics Solvers
  • Computing propagators
    • Using a solver to compute a propagator
Previous Next

© Copyright 2025 to 2024 inclusive, QuTiP developers and contributors. Last updated on Feb 21, 2025.

Built with Sphinx using a theme provided by Read the Docs.