论文标题
任意时间连续演化的广义量子速度极限
Generalised quantum speed limit for arbitrary time-continuous evolution
论文作者
论文摘要
量子速度限制描述了量子系统在给定动力学下从初始状态到最终状态的量子系统如何迅速发展。在这里,我们使用量子力学的几何方法得出了一个通用的量子速度极限(GQSL),以进行任意时间连续演化。 GQSL适用于经过统一,非独立,完全积极,不完全积极和相对论量子动力学的量子系统。这将减少到众所周知的标准量子速度极限(QSL),即当量子系统经历单一时间演变时,Mandelstam-Tamm结合。然后,使用我们的形式主义,我们获得了非铁量量子系统的量子速度限制。为了说明我们的发现,我们估计了与时间无关的非铁系统的量子速度限制以及时间依赖的非速度系统,即用于一般两级系统的Bethe-Lamb Hamiltonian。
The quantum speed limit describes how quickly a quantum system can evolve in time from an initial state to a final state under a given dynamics. Here, we derive a generalised quantum speed limit (GQSL) for arbitrary time-continuous evolution using the geometrical approach of quantum mechanics. The GQSL is applicable for quantum systems undergoing unitary, non-unitary, completely positive, non-completely positive and relativistic quantum dynamics. This reduces to the well known standard quantum speed limit (QSL), i.e., the Mandelstam-Tamm bound when the quantum system undergoes unitary time evolution. Using our formalism, we then obtain a quantum speed limit for non-Hermitian quantum systems. To illustrate our findings, we have estimated the quantum speed limit for a time-independent non-Hermitian system as well as for a time-dependent non-Hermitian system namely the Bethe-Lamb Hamiltonian for general two-level system.