Kaap Fabian, Kissling Christoph, Gaydamachenko Victor, Grünhaupt Lukas, Lotkhov Sergey
Physikalisch-Technische Bundesanstalt, Bundesallee 100, 38116, Braunschweig, Germany.
Nat Commun. 2024 Oct 9;15(1):8726. doi: 10.1038/s41467-024-53011-z.
Bloch oscillations in small Josephson junctions were predicted theoretically as the quantum dual to Josephson oscillations. A significant consequence of this prediction is the emergence of quantized current steps, so-called dual Shapiro steps, when synchronizing Bloch oscillations to an external microwave signal. These steps potentially enable a fundamental standard of current I, defined via the frequency f of the external signal and the elementary charge e, I = ± n × 2ef, where n is a natural number. Here, we realize this fundamental relation by synchronizing the Bloch oscillations in small Al/AlO/Al Josephson junctions to sinusoidal drives with frequencies from 1 to 6 GHz and observe dual Shapiro steps up to I ≈ 3 nA. Inspired by today's voltage standards and to further confirm the duality relation, we investigate a pulsed drive regime and observe an asymmetric pattern of dual Shapiro steps. This work confirms quantum duality effects in Josephson junctions and paves the way towards a range of applications in quantum metrology based on well-established fabrication techniques and straightforward circuit design.
在小型约瑟夫森结中,布洛赫振荡在理论上被预测为约瑟夫森振荡的量子对偶。这一预测的一个重要结果是,当将布洛赫振荡与外部微波信号同步时,会出现量化电流台阶,即所谓的对偶夏皮罗台阶。这些台阶有可能实现电流I的基本标准,该标准通过外部信号的频率f和基本电荷e来定义,即I = ±n×2ef,其中n为自然数。在此,我们通过将小型Al/AlO/Al约瑟夫森结中的布洛赫振荡与频率为1至6 GHz的正弦驱动同步,实现了这一基本关系,并观察到高达I≈3 nA的对偶夏皮罗台阶。受当今电压标准的启发,并为进一步证实对偶关系,我们研究了脉冲驱动模式,并观察到对偶夏皮罗台阶的不对称模式。这项工作证实了约瑟夫森结中的量子对偶效应,并基于成熟的制造技术和简单的电路设计,为一系列量子计量应用铺平了道路。