论文标题
MM-Wave Rydberg-Rydberg共振作为分子偶联的见证
mm-wave Rydberg-Rydberg resonances as a witness of intermolecular coupling in the arrested relaxation of a molecular ultracold plasma
论文作者
论文摘要
超平衡,在多体系统中的强相关性触发了新兴特性,这些特性可以以重要的方式作用来限制能量和物质的自然耗散。原子网络,精心设计的,用于安排位置和调整相互作用能,表现出惊人的动力学。但是,强相关本身也可以起作用以限制可用的相空间。受强相关性限制的松弛会导致自组织临界性的规模不变性和密度分布的特征。一段时间以来,我们已经观察到雪崩中自组织的迹象,一氧化氮的状态选择的Rydberg气体的分叉和淬火,形成了超速,密切相关的超速血浆。该系统的强大逮捕松弛形成了一个无序状态,具有量子力学特性,似乎支持运输的连贯破坏。这里报告的工作重点是雪崩和淬火的初始阶段,使用嵌入式量子探针的MM波光谱法表征与等离子体演变相关的分子间相互作用动力学。双谐激励准备了由单个选定状态组成的一氧化氮的rydberg气体,$ n_0f(2)$。笔球离子化随后是电子rydberg碰撞的雪崩,形成了无$^+$离子的等离子体和弱绑定的电子,其中残留$ n_0 $ n_0 $ rydberg Molecules的剩余人口将发展到高 - $ \ ell $。长期以来,$ n_0 \ ell(2)\ rightarrow(n_0 \ pm 1)d(2)$ depletion resonances信号信号在中央野外Rydberg State的基础上。 FANO线路的宽度和不对称性见证了与被捕浴的耦合的程度拓宽了明亮的状态,以及明亮态的预测如何混合本地化合奏中的水平网络。
Out-of-equilibrium, strong correlation in a many-body system triggers emergent properties that can act in important ways to constrain the natural dissipation of energy and matter. Networks of atoms, intricately engineered to arrange positions and tune interaction energies, exhibit striking dynamics. But, strong correlation itself can also act to restrict available phase space. Relaxation confined by strong correlation gives rise to scale invariance and density distributions characteristic of self-organized criticality. For some time, we have observed signs of self-organization in the avalanche, bifurcation and quench of a state-selected Rydberg gas of nitric oxide to form an ultracold, strongly correlated ultracold plasma. The robust arrested relaxation of this system forms a disordered state with quantum-mechanical properties that appear to support a coherent destruction of transport. Work reported here focuses on initial stages of avalanche and quench, using the mm-wave spectroscopy of an embedded quantum probe to characterize the intermolecular interaction dynamics associated with the evolution to plasma. Double-resonance excitation prepares a Rydberg gas of nitric oxide composed of a single selected state, $n_0f(2)$. Penning ionization, followed by an avalanche of electron-Rydberg collisions, forms a plasma of NO$^+$ ions and weakly bound electrons, in which a residual population of $n_0$ Rydberg molecules evolves to high-$\ell$. At long times, $n_0\ell(2) \rightarrow (n_0 \pm 1)d(2)$ depletion resonances signal collision-free energy redistribution in the basis of central-field Rydberg states. The widths and asymmetries of Fano lineshapes witness the degree to which coupling to the arrested bath broadens the bright state as well as how bright-state predissociation mixes the network of levels in the localized ensemble.