论文标题
在Millikelvin温度下的TEM:观察和利用超导Qubit
TEM at Millikelvin Temperatures: Observing and Utilizing Superconducting Qubits
论文作者
论文摘要
我们提出了开发Millikelvin温度透射电子显微镜(TEM)的案例。我们首先回顾了这种发展的已知原因,然后提出了新的可能性,这些可能性是通过超导量子电路的最新进展所开发的,并最终报告了我们正在进行的实验努力。具体而言,我们首先审查了观察超导量子周围的机械超级电磁场的可能性。接下来是关于在谐振器中异常量子状态下观察微波光子的新想法。然后,我们继续审查这些现象的潜在应用,其中包括低剂量电子显微镜超出标准量子极限。最后,描述了预期的工程挑战,以及作者目前为建立Millikelvin TEM的持续实验努力。此外,我们为不熟悉该主题的有兴趣的读者提供了附录中超导电路的简要介绍。
We present a case for developing a millikelvin-temperature transmission electron microscope (TEM). We start by reviewing known reasons for such development, then present new possibilities that have been opened up by recent progress in superconducting quantum circuitry, and finally report on our ongoing experimental effort. Specifically, we first review possibilities to observe a quantum mechanically superposed electromagnetic field around a superconducting qubit. This is followed by a new idea on TEM observation of microwave photons in an unusual quantum state in a resonator. We then proceed to review potential applications of these phenomena, which include low dose electron microscopy beyond the standard quantum limit. Finally, anticipated engineering challenges, as well as the authors' current ongoing experimental effort towards building a millikelvin TEM are described. In addition, we provide a brief introduction to superconducting circuitry in the Appendix for the interested reader who is not familiar with the subject.