Universität Osnabrück, Fachbereich Physik, D-49069 Osnabrück, Germany.
Universität Bielefeld, Fakultät für Physik, D-33501 Bielefeld, Germany.
Phys Rev E. 2019 Oct;100(4-1):042141. doi: 10.1103/PhysRevE.100.042141.
We consider a spin s subjected to both a static and an orthogonally applied oscillating, circularly polarized magnetic field while being coupled to a heat bath and analytically determine the quasistationary distribution of its Floquet-state occupation probabilities for arbitrarily strong driving. This distribution is shown to be Boltzmannian with a quasitemperature which is different from the temperature of the bath and independent of the spin quantum number. We discover a remarkable formal analogy between the quasithermal magnetism of the nonequilibrium steady state of a driven ideal paramagnetic material and the usual thermal paramagnetism. Nonetheless, the response of such a material to the combined fields is predicted to show several unexpected features, even allowing one to turn a paramagnet into a diamagnet under strong driving. Thus, we argue that experimental measurements of this response may provide key paradigms for the emerging field of periodic thermodynamics.
我们考虑一个自旋 s,它同时受到一个静态和一个正交施加的、圆偏振的磁场的作用,同时与热浴耦合,并在任意强驱动的情况下分析确定其弗洛凯态占据概率的准稳态分布。该分布被证明是玻尔兹曼分布,具有与浴温不同且与自旋量子数无关的准温度。我们发现,驱动理想顺磁材料的非平衡稳态的准热磁与通常的热顺磁之间存在显著的形式类比。尽管如此,这种材料对组合场的响应预计会表现出一些意想不到的特征,甚至可以在强驱动下将顺磁体变为抗磁体。因此,我们认为这种响应的实验测量可能为正在发展的周期性热力学领域提供关键范例。