论文标题
钻石中无序的偶性自旋合奏中的准浮力细蛋白
Quasi-Floquet prethermalization in a disordered dipolar spin ensemble in diamond
论文作者
论文摘要
Floquet(周期性)驾驶最近已成为工程量子系统的强大技术,并实现了物质的非平衡阶段。在这种系统中稳定量子现象的核心挑战是需要防止驾驶场上的能量吸收。幸运的是,当驱动器的频率明显大于多体系统的局部能量尺度时,会抑制能量吸收。这种所谓的prethermal制度的存在敏感地取决于相互作用的范围和多个驱动频率的存在。在这里,我们报告了钻石中强烈相互作用的偶极自旋合奏中浮球细浮温化的观察,其中偶极耦合的角度依赖性有助于减轻相互作用的长期性质。此外,我们将实验性观察扩展到具有多个不稳定频率的准浮动驱动器。与单频驱动器相反,我们发现prethermalization的存在对应用场的平滑度极为敏感。我们的结果为在准周期驱动的系统中稳定和表征非平衡现象打开了大门。
Floquet (periodic) driving has recently emerged as a powerful technique for engineering quantum systems and realizing non-equilibrium phases of matter. A central challenge to stabilizing quantum phenomena in such systems is the need to prevent energy absorption from the driving field. Fortunately, when the frequency of the drive is significantly larger than the local energy scales of the many-body system, energy absorption is suppressed. The existence of this so-called prethermal regime depends sensitively on the range of interactions and the presence of multiple driving frequencies. Here, we report the observation of Floquet prethermalization in a strongly interacting dipolar spin ensemble in diamond, where the angular dependence of the dipolar coupling helps to mitigate the long-ranged nature of the interaction. Moreover, we extend our experimental observation to quasi-Floquet drives with multiple incommensurate frequencies. In contrast to a single-frequency drive, we find that the existence of prethermalization is extremely sensitive to the smoothness of the applied field. Our results open the door to stabilizing and characterizing non-equilibrium phenomena in quasi-periodically driven systems.