论文标题

微波炉内的磁悬浮:表征,挑战和可能性

Magnetic levitation within a microwave cavity: characterization, challenges, and possibilities

论文作者

Raut, Nabin K., Miller, Jeffery, Chiao, Raymond E., Sharping, Jay E.

论文摘要

超导磁悬浮的低能量损失使其对于物理中令人兴奋的应用有吸引力。最近,超导磁性悬浮已被实现为氮 - 胶囊中心中单个自旋量子的新机械转导[1]。此外,已经提出了Meissner用于研究改良的重力波检测[2]。微波腔内的Meissner悬浮可以为新型腔体光学系统,量子对象(例如Transmon)和镁,引力波检测和磁力学的读数开放途径[3]。这项工作表征了微波炉内的磁悬浮。它还讨论了空腔磁铁系统的可能性,挑战以及室温和低温实验。

The low energy losses in the superconducting magnetic levitation make it attractive for exciting applications in physics. Recently, superconducting magnetic levitation has been realized as novel mechanical transduction for the individual spin qubit in the nitrogen-vacancy center [1]. Furthermore, the Meissner has been proposed for the study of modified gravitational wave detection [2]. Meissner levitation within the microwave cavity could open avenues for the novel cavity optomechanical system, readout for quantum object such as the transmon, and magnon, gravitational wave detection, and magnetomechanics [3]. This work characterized magnetic levitation within a microwave. It also discusses possibilities, challenges, and room temperature and cryogenic experiments of the cavity-magnet system.

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