Blech Alexander, Shagam Yuval, Hölsch Nicolas, Paliwal Prerna, Skomorowski Wojciech, Rosenberg John W, Bibelnik Natan, Heber Oded, Reich Daniel M, Narevicius Edvardas, Koch Christiane P
Theoretische Physik, Universität Kassel, Heinrich-Plett-Straße 40, 34132, Kassel, Germany.
Dahlem Center for Complex Quantum Systems and Fachbereich Physik, Freie Universität Berlin, Arnimallee 14, 14195, Berlin, Germany.
Nat Commun. 2020 Feb 21;11(1):999. doi: 10.1038/s41467-020-14797-w.
Decay of bound states due to coupling with free particle states is a general phenomenon occurring at energy scales from MeV in nuclear physics to peV in ultracold atomic gases. Such a coupling gives rise to Fano-Feshbach resonances (FFR) that have become key to understanding and controlling interactions-in ultracold atomic gases, but also between quasiparticles, such as microcavity polaritons. Their energy positions were shown to follow quantum chaotic statistics. In contrast, their lifetimes have so far escaped a similarly comprehensive understanding. Here, we show that bound states, despite being resonantly coupled to a scattering state, become protected from decay whenever the relative phase is a multiple of π. We observe this phenomenon by measuring lifetimes spanning four orders of magnitude for FFR of spin-orbit excited molecular ions with merged beam and electrostatic trap experiments. Our results provide a blueprint for identifying naturally long-lived states in a decaying quantum system.
由于与自由粒子态耦合导致的束缚态衰变是一种普遍现象,发生在从核物理中的兆电子伏特到超冷原子气体中的皮电子伏特的能量尺度范围内。这种耦合会产生法诺 - 费什巴赫共振(FFR),它不仅已成为理解和控制超冷原子气体中相互作用的关键,也是理解和控制诸如微腔极化激元等准粒子之间相互作用的关键。已表明它们的能量位置遵循量子混沌统计。相比之下,到目前为止,它们的寿命尚未得到类似的全面理解。在此,我们表明,尽管束缚态与散射态发生共振耦合,但只要相对相位是π的倍数,束缚态就会受到保护而免于衰变。我们通过合并束和静电阱实验测量自旋 - 轨道激发分子离子的FFR跨越四个数量级的寿命来观察这一现象。我们的结果为识别衰变量子系统中自然存在的长寿命态提供了一个蓝图。