论文标题
超导值的声音浴工程
Phononic bath engineering of a superconducting qubit
论文作者
论文摘要
振动能的无处不在量子声子在量子技术的性能中起着至关重要的作用。相反,意想不到的耦合与声子降低了值的性能,并可能导致超导量子系统的相关误差。无论声子是扮演有利的角色还是有害角色,它们通常都不承认对其光谱属性的控制,也不可能将其耗散用作资源进行工程化的可能性。在这里,我们表明,将超导量子轴耦合到压电表面声波声子浴的浴场,使一个新型平台用于研究开放量子系统。通过通过有损的表面声子浴量子的损失谱,我们通过驱动和耗散的综合效应来证明叠加态的制备和动态稳定。这些实验突出了工程性语音耗散的多功能性,并提高了对超导量子系统中机械损失的理解。
Phonons, the ubiquitous quanta of vibrational energy, play a vital role in the performance of quantum technologies. Conversely, unintended coupling to phonons degrades qubit performance and can lead to correlated errors in superconducting qubit systems. Regardless of whether phonons play an enabling or deleterious role, they do not typically admit control over their spectral properties, nor the possibility of engineering their dissipation to be used as a resource. Here we show that coupling a superconducting qubit to a bath of piezoelectric surface acoustic wave phonons enables a novel platform for investigating open quantum systems. By shaping the loss spectrum of the qubit via the bath of lossy surface phonons, we demonstrate preparation and dynamical stabilization of superposition states through the combined effects of drive and dissipation. These experiments highlight the versatility of engineered phononic dissipation and advance the understanding of mechanical losses in superconducting qubit systems.