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We present a dual cut-off, dc-tunable low-pass microwave filter on a superconducting Nb microstrip with uniaxial asymmetric nanogrooves. The frequency response of the device was measured in the range $300$\,KHz to $14$\,GHz at different…

Superconductivity · Physics 2017-05-01 Oleksandr V. Dobrovolskiy , Michael Huth

Abrikosov fluxonics, a domain of science and engineering at the interface of superconductivity research and nanotechnology, is concerned with the study of properties and dynamics of Abrikosov vortices in nanopatterned superconductors, with…

Superconductivity · Physics 2017-05-01 Oleksandr V. Dobrovolskiy

A lattice of Abrikosov vortices in type II superconductors is characterized by a periodic modulation of the magnetic induction perpendicular to the applied magnetic field. For a coherent vortex motion under the action of a transport…

In the mixed state of type II superconductors penetrated by an external magnetic field in the form of a lattice of Abrikosov vortices the dc resistance is known to increase with increasing velocity of the vortex lattice. Accordingly, vortex…

The operation of superconducting coplanar waveguide cavities, as used for circuit quantum electrodynamics and kinetic inductance detectors, in perpendicular magnetic fields normally leads to a reduction of the device performance due to…

Superconductivity · Physics 2015-05-27 Daniel Bothner , Tobias Gaber , Matthias Kemmler , Dieter Koelle , Reinhold Kleiner

Ferromagnet/superconductor heterostructures allow for the combination of unique physical phenomena offered by the both fields of magnetism and superconductivity. It was shown recently that spin waves can be efficiently scattered in such…

Superconductivity · Physics 2021-11-10 Oleksandr V. Dobrovolskiy , Andrii V. Chumak

We experimentally investigate the vortex induced energy losses in niobium coplanar waveguide resonators with and without quasihexagonal arrays of nanoholes (antidots), where large-area antidot patterns have been fabricated using…

Superconductivity · Physics 2015-06-03 D. Bothner , C. Clauss , E. Koroknay , M. Kemmler , T. Gaber , M. Jetter , M. Scheffler , P. Michler , M. Dressel , D. Koelle , R. Kleiner

We present a lab-on-chip experiment to accurately measure losses of superconducting microstrip lines at microwave and sub-mm wavelengths. The microstrips are fabricated from NbTiN, which is deposited using reactive magnetron sputtering, and…

Instrumentation and Detectors · Physics 2021-08-26 S. Hähnle , K. Kouwenhoven , B. Buijtendorp , A. Endo , K. Karatsu , D. J. Thoen , V. Murugesan , J. J. A. Baselmans

Using a perturbative approach, the effects of the energy gap induced by the Aharonov-Bohm (AB) flux on the transport properties of defective metallic single-walled carbon nanotubes (MSWCNTs) are investigated. The electronic waves scattered…

Mesoscale and Nanoscale Physics · Physics 2008-02-04 Mehran Bagheri

Superconductors are characterized by macroscopic phase coherence and have enabled cryogenic electronics and quantum technologies. Recent advances in 3D nanofabrication now offer possibilities for tuning functional properties relevant for…

Superconductivity · Physics 2025-03-26 Axel J. M. Deenen , Dirk Grundler

We measure the small signal, 1 GHz source-drain dynamical conductance of a back-gated single-walled carbon nanotube field effect transistor at both low and high dc bias voltages. At all bias voltages, the intrinsic device dynamical…

Mesoscale and Nanoscale Physics · Physics 2009-11-11 Z. Yu , C. Rutherglan P. J. Burke

Superconducting coplanar waveguide resonators that can operate in strong magnetic fields are important tools for a variety of high frequency superconducting devices. Magnetic fields degrade resonator performance by creating Abrikosov…

Guided and rectified motion of magnetic flux quanta are important effects governing the magneto-resistive response of nanostructured superconductors. While at low ac frequencies these effects are rather well understood, their manifestation…

Superconductivity · Physics 2020-01-22 O. V. Dobrovolskiy , E. Begun , V. M. Bevz , R. Sachser , M. Huth

Performance of superconducting resonators, particularly cavities for particle accelerators and micro cavities and thin film resonators for quantum computations and photon detectors has been improved substantially by recent materials…

Superconductivity · Physics 2023-05-10 Alex Gurevich

Inspired by the parity-time symmetry concept, we show that a judicious spatial modulation of gain and loss in epsilon-near-zero metamaterials can induce the propagation of exponentially-bound interface modes characterized by zero…

We describe an experimental protocol to characterize magnetic field dependent microwave losses in superconducting niobium microstrip resonators. Our approach provides a unified view that covers two well-known magnetic field dependent loss…

The current distribution and the AC loss in a composite superconducting tape containing a layer from magnetic material is calculated and compared with experiments, showing a very good agreement. The situations of an alternating uniform…

Superconductivity · Physics 2011-02-22 F. Gömöry , M. Vojenčiak , E. Pardo , J. Šouc

Measuring the losses arising from different materials and interfaces is crucial to improving the coherence of superconducting quantum circuits. Although this has been of interest for a long time, current studies can either only provide…

We study the microwave impedance of extremely high aspect ratio (length/width ~ 5,000) superconducting niobium nitride nanowires. The nanowires are fabricated in a compact meander geometry that is in series with the center conductor of a 50…

Superconductivity · Physics 2016-07-14 Daniel F. Santavicca , Jesse K. Adams , Lierd E. Grant , Adam N. McCaughan , Karl K. Berggren

Characterizing superconducting microwave resonators with highly dissipative elements is a technical challenge, but a requirement for implementing and understanding the operation of hybrid quantum devices involving dissipative elements, e.g.…

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