Demonstration of dual Shapiro steps in small Josephson junctions
Abstract: 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 $e$, $I=\pm n \times 2ef$, where $n$ is a natural number. Here, we realize this fundamental relation by synchronizing the Bloch oscillations in small Al/AlO$_\mathrm{x}$/Al Josephson junctions to sinusoidal drives with frequencies varying from $1$ to $6:\mathrm{GHz}$ and observe dual Shapiro steps up to $I\approx 3 : \mathrm{nA}$. Inspired by today's voltage standards and to further confirm the duality relation, we investigate a pulsed drive regime, which is dual to the single flux quantum mode of Josephson oscillations, and observe a similar 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.
- B. Jeanneret and S. Benz, Application of the josephson effect in electrical metrology, The European Physical Journal Special Topics 172, 181 (2009).
- B. Josephson, Possible new effects in superconductive tunnelling, Physics Letters 1, 251 (1962).
- S. Shapiro, Josephson currents in superconducting tunneling: The effect of microwaves and other observations, Phys. Rev. Lett. 11, 80 (1963).
- K. Likharev and A. Zorin, Theory of the bloch-wave oscillations in small josephson junctions, Journal of Low Temperature Physics 59, 347 (1985).
- D. Averin, A. Zorin, and K. Likharev, Bloch oscillations in small josephson junctions, Sov. Phys. JETP 61, 407 (1985).
- L. Kuzmin and D. Haviland, Observation of the bloch oscillations in an ultrasmall josephson junction, Physical Review Letters 67, 2890 (1991).
- L. Arndt, A. Roy, and F. Hassler, Dual shapiro steps of a phase-slip junction in the presence of a parasitic capacitance, Phys. Rev. B 98, 014525 (2018).
- A. Glezer Moshe, E. Farber, and G. Deutscher, Granular superconductors for high kinetic inductance and low loss quantum devices, Applied Physics Letters 117, 062601 (2020).
- F. Kaap and S. Lotkhov, High-kinetic-inductance microstrip wiring and a frequency-related cooper pair current in ultrasmall josephson junctions, Proceedings of Conference on Precision Electromagnetic Measurements 77, 165 (2022).
- F. Maibaum, S. V. Lotkhov, and A. Zorin, Towards the observation of phase-locked bloch oscillations in arrays of small josephson junctions, Physical Review B 84, 174514 (2011).
- S. Maggi, Step width enhancement in a pulse-driven josephson junction, Journal of Applied Physics 79, 7860 (1996).
- S. P. Benz and C. A. Hamilton, A pulse‐driven programmable Josephson voltage standard, Applied Physics Letters 68, 3171 (1996), https://pubs.aip.org/aip/apl/article-pdf/68/22/3171/10166824/3171_1_online.pdf .
- F. Bloch, Über die quantenmechanik der elektronen in kristallgittern, Zeitschrift für physik 52, 555 (1929).
- C. Kittel, Introduction to solid state physics (John Wiley & sons, inc, 2005).
- S. V. Lotkhov, Ultra-high-ohmic microstripline resistors for coulomb blockade devices, Nanotechnology 24, 235201 (2013).
- A. Zaikin and I. Kosarev, Quantum coherent effects and zener tunneling in superconducting tunnel junctions, Physics Letters A 131, 125 (1988).
- U. Geigenmüller and G. Schön, Single electron effects and bloch oscillations in normal and superconducting tunnel junctions, Physica B: Condensed Matter 152, 186 (1988).
- P. Tien and J. Gordon, Multiphoton process observed in the interaction of microwave fields with the tunneling between superconductor films, Physical Review 129, 647 (1963).
- G. Dolan, Offset masks for lift-off photoprocessing, Applied Physics Letters 31, 337 (1977).
- A. B. Zorin, The thermocoax cable as the microwave frequency filter for single electron circuits, Review of Scientific Instruments 66, 4296 (1995).
Paper Prompts
Sign up for free to create and run prompts on this paper using GPT-5.
Top Community Prompts
Collections
Sign up for free to add this paper to one or more collections.