论文标题

高能准颗粒注射到介质超导体中

High-Energy Quasiparticle Injection into Mesoscopic Superconductors

论文作者

Alegria, Loren D., Bøttcher, Charlotte G., Saydjari, Andrew K., Pierce, Andrew T., Lee, Seung H., Harvey, Shannon P., Vool, Uri, Yacoby, Amir

论文摘要

在非零温度下,超导体含有称为Bogoliubov准粒子的激发。准颗粒的介观动态为量子信息处理器的设计和其他设备提供了信息。这些动力学的知识源于实验,其中准粒子以受控方式注入,通常以与配对能相当的能量。在这里,我们对高电场下的介质超导体进行隧道光谱。我们观察到由于野外发射的电子而导致的准颗粒注射,其配对能,这是一个未开发的准粒子动力学状态。在应用栅极电压后,准颗粒注射会降低临界电流,并且在足够高的电场下,场发射电流(<0.1 Na)将介质超导体切换到正常状态,与早期结果一致。我们预计,高能注入将有助于开发易于量子量的量子信息处理器,将允许快速控制谐振器质量因子,并能够设计具有新功能的电场控制超导设备。

At nonzero temperatures, superconductors contain excitations known as Bogoliubov quasiparticles. The mesoscopic dynamics of quasiparticles inform the design of quantum information processors, among other devices. Knowledge of these dynamics stems from experiments in which quasiparticles are injected in a controlled fashion, typically at energies comparable to the pairing energy . Here we perform tunnel spectroscopy of a mesoscopic superconductor under high electric field. We observe quasiparticle injection due to field-emitted electrons with 10^6 times the pairing energy, an unexplored regime of quasiparticle dynamics. Upon application of a gate voltage, the quasiparticle injection decreases the critical current and, at sufficiently high electric field, the field-emission current (< 0.1 nA) switches the mesoscopic superconductor into the normal state, consistent with earlier results. We expect that high-energy injection will be useful for developing quasiparticle-tolerant quantum information processors, will allow rapid control of resonator quality factors, and will enable the design of electric-field-controlled superconducting devices with new functionality.

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