论文标题
量子散射引起的热化
Thermalization induced by quantum scattering
论文作者
论文摘要
我们使用量子散射理论来研究固定的量子系统y,但与波包描述的巨大颗粒X发生碰撞。我们得出系统y的散射图,并表明诱导的进化至关重要取决于与y中的水平间距相比,入射波包的宽度。如果y是非分类的,则与窄波包的顺序碰撞会导致y装饰。此外,由热积液产生的狭窄数据包的合奏会导致y热化。另一方面,即使在由积液分布给出的事件波包的情况下,宽波包也可以充当Y的连贯源,从而阻止热化。我们在几个简单的例子上说明了我们的发现,并在现实的实验情况下讨论了结果的后果。
We use quantum scattering theory to study a fixed quantum system Y subject to collisions with massive particles X described by wave-packets. We derive the scattering map for system Y and show that the induced evolution crucially depends on the width of the incident wave-packets compared to the level spacing in Y . If Y is non-degenerate, sequential collisions with narrow wave-packets cause Y to decohere. Moreover, an ensemble of narrow packets produced by thermal effusion causes Y to thermalize. On the other hand, broad wave-packets can act as a source of coherences for Y , even in the case of an ensemble of incident wave-packets given by the effusion distribution, preventing thermalization. We illustrate our findings on several simple examples and discuss the consequences of our results in realistic experimental situations.