论文标题
在任意耦合处的自旋玻色子平衡状态中的量子古典对应关系
Quantum-classical correspondence in spin-boson equilibrium states at arbitrary coupling
论文作者
论文摘要
纳米级系统的平衡特性由于与环境的耦合,可能会显着偏离标准热力学。对于广义的$θ$角旋转玻璃模型,我们首先得出经典平衡状态的紧凑和一般形式,包括所有订单的环境校正。其次,对于量子自旋 - 玻色子模型,我们通过仔细采取较大的自旋极限来证明,Bohr的量子古典对应关系在所有耦合强度上都持续存在。这种对应关系可以深入了解耦合的量子自旋的条件,以通过耦合的经典自旋载体对其进行良好的影响。第三,我们证明了以前鉴定的环境诱导的“连贯”在弱耦合量子旋转的平衡状态下,在经典情况下不会消失。最后,我们为量子案例和经典设置提供了从弱到Ultrastrong的自旋 - 玻色子模型的耦合参数模式的第一个分类。我们的结果揭示了量子和平均力校正在旋转玻色子模型的平衡状态下的相互作用,并将有助于将量子绘制到一系列磁场(例如磁性和激子动力学)中的经典边界。
The equilibrium properties of nanoscale systems can deviate significantly from standard thermodynamics due to their coupling to an environment. For the generalised $θ$-angled spin-boson model, we first derive a compact and general form of the classical equilibrium state including environmental corrections to all orders. Secondly, for the quantum spin-boson model we prove, by carefully taking a large spin limit, that Bohr's quantum-classical correspondence persists at all coupling strengths. This correspondence gives insight into the conditions for a coupled quantum spin to be well-approximated by a coupled classical spin-vector. Thirdly, we demonstrate that previously identified environment-induced 'coherences' in the equilibrium state of weakly coupled quantum spins, do not disappear in the classical case. Finally, we provide the first classification of the coupling parameter regimes for the spin-boson model, from weak to ultrastrong, both for the quantum case and the classical setting. Our results shed light on the interplay of quantum and mean force corrections in equilibrium states of the spin-boson model, and will help draw the quantum to classical boundary in a range of fields, such as magnetism and exciton dynamics.