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PsiQuaSP–A library for efficient computation of symmetric open quantum systems

机译:PsiQuaSP –一个用于高效计算对称开放量子系统的库

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摘要

In a recent publication we showed that permutation symmetry reduces the numerical complexity of Lindblad quantum master equations for identical multi-level systems from exponential to polynomial scaling. This is important for open system dynamics including realistic system bath interactions and dephasing in, for instance, the Dicke model, multi-Λ system setups etc. Here we present an object-oriented C++ library that allows to setup and solve arbitrary quantum optical Lindblad master equations, especially those that are permutationally symmetric in the multi-level systems. PsiQuaSP (Permutation symmetry for identical Quantum Systems Package) uses the PETSc package for sparse linear algebra methods and differential equations as basis. The aim of PsiQuaSP is to provide flexible, storage efficient and scalable code while being as user friendly as possible. It is easily applied to many quantum optical or quantum information systems with more than one multi-level system. We first review the basics of the permutation symmetry for multi-level systems in quantum master equations. The application of PsiQuaSP to quantum dynamical problems is illustrated with several typical, simple examples of open quantum optical systems.
机译:在最近的出版物中,我们证明了置换对称性降低了相同多级系统从指数缩放到多项式缩放的Lindblad量子主方程的数值复杂性。这对于开放系统动力学非常重要,包括现实的系统浴相互作用和移入Dicke模型,多Λ系统设置等。在这里,我们介绍了一个面向对象的C ++库,该库允许设置和解决任意量子光学Lindblad master方程,尤其是在多级系统中排列对称的方程。 PsiQuaSP(同一量子系统软件包的排列对称性)使用PETSc软件包作为稀疏线性代数方法和微分方程的基础。 PsiQuaSP的目的是提供灵活,存储高效和可扩展的代码,同时尽可能地方便用户使用。它很容易应用于具有一个以上多级系统的许多量子光学或量子信息系统。我们首先回顾量子主方程中多级系统置换对称性的基础。用开放式量子光学系统的几个典型,简单的例子说明了PsiQuaSP在量子动力学问题上的应用。

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