论文标题

用于弯曲时空中动力学的量子场模拟器

Quantum field simulator for dynamics in curved spacetime

论文作者

Viermann, Celia, Sparn, Marius, Liebster, Nikolas, Hans, Maurus, Kath, Elinor, Parra-López, Álvaro, Tolosa-Simeón, Mireia, Sánchez-Kuntz, Natalia, Haas, Tobias, Strobel, Helmut, Floerchinger, Stefan, Oberthaler, Markus K.

论文摘要

在我们宇宙中观察到的大规模结构是由于时空进化扩增的量子波动的结果。这以及宇宙学中的相关问题要求了解弯曲时空中标准模型和暗物质的量子场。即使是在时间相关的时空度量标准中,标量量子场的减少问题也是理论上的挑战,因此量子场模拟器也会导致新的见解。在这里,我们在二维Bose-Einstein冷凝物中演示了具有可配置陷阱和可调节的相互作用强度以实现此模型系统的量子场模拟器。我们明确地显示了通过波包传播的正空间曲率和负空间曲率的空间的实现,并确认了空间的受控幂律扩展中的粒子对产生。我们发现定量一致性与时间和空间中不同曲率的新分析预测。该基准分析并因此建立了新类的量子字段模拟器。将来,直接升级提供了进入新的,尚未探索的政权的可能性,从而进一步了解相对论量子场动态。

The observed large-scale structure in our Universe is seen as a result of quantum fluctuations amplified by spacetime evolution. This, and related problems in cosmology, asks for an understanding of the quantum fields of the standard model and dark matter in curved spacetime. Even the reduced problem of a scalar quantum field in an explicitly time-dependent spacetime metric is a theoretical challenge and thus a quantum field simulator can lead to new insights. Here, we demonstrate such a quantum field simulator in a two-dimensional Bose-Einstein condensate with a configurable trap and adjustable interaction strength to implement this model system. We explicitly show the realisation of spacetimes with positive and negative spatial curvature by wave packet propagation and confirm particle pair production in controlled power-law expansion of space. We find quantitative agreement with new analytical predictions for different curvatures in time and space. This benchmarks and thereby establishes a quantum field simulator of a new class. In the future, straightforward upgrades offer the possibility to enter new, so far unexplored, regimes that give further insight into relativistic quantum field dynamics.

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