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Designing the spatial profile of the superconducting gap -- gap engineering -- has long been recognized as an effective way of controlling quasiparticles in superconducting devices. In aluminum films, their thickness modulates the gap;…

Mesoscale and Nanoscale Physics · Physics 2023-01-02 Giampiero Marchegiani , Luigi Amico , Gianluigi Catelani

The electronic circulator, and its close relative the gyrator, are invaluable tools for noise management and signal routing in the current generation of low-temperature microwave systems for the implementation of new quantum technologies.…

Mesoscale and Nanoscale Physics · Physics 2014-05-06 Giovanni Viola , David P. DiVincenzo

We report on spectroscopic and time-domain measurements on a fixed-frequency concentric transmon qubit in an applied in-plane magnetic field to explore its limits of magnetic field compatibility. We demonstrate quantum coherence of the…

We demonstrate a suspended thin-film aluminum nitride (AlN) microbolometer for narrowband very long-wave infrared detection. The device uses a 100-nm-thick AlN membrane suspended above a Pt back reflector by a 1-um air gap. Resonant…

We present measurements and simulations of semiconductor-superconductor heterostructure devices that are consistent with the observation of topological superconductivity and Majorana zero modes. The devices are fabricated from high-mobility…

Mesoscale and Nanoscale Physics · Physics 2025-01-08 Morteza Aghaee , Arun Akkala , Zulfi Alam , Rizwan Ali , Alejandro Alcaraz Ramirez , Mariusz Andrzejczuk , Andrey E Antipov , Pavel Aseev , Mikhail Astafev , Bela Bauer , Jonathan Becker , Srini Boddapati , Frenk Boekhout , Jouri Bommer , Esben Bork Hansen , Tom Bosma , Leo Bourdet , Samuel Boutin , Philippe Caroff , Lucas Casparis , Maja Cassidy , Anna Wulf Christensen , Noah Clay , William S Cole , Fabiano Corsetti , Ajuan Cui , Paschalis Dalampiras , Anand Dokania , Gijs de Lange , Michiel de Moor , Juan Carlos Estrada Saldaña , Saeed Fallahi , Zahra Heidarnia Fathabad , John Gamble , Geoff Gardner , Deshan Govender , Flavio Griggio , Ruben Grigoryan , Sergei Gronin , Jan Gukelberger , Sebastian Heedt , Jesús Herranz Zamorano , Samantha Ho , Ulrik Laurens Holgaard , William Hvidtfelt Padkær Nielsen , Henrik Ingerslev , Peter Jeppesen Krogstrup , Linda Johansson , Jeffrey Jones , Ray Kallaher , Farhad Karimi , Torsten Karzig , Evelyn King , Maren Elisabeth Kloster , Christina Knapp , Dariusz Kocon , Jonne Koski , Pasi Kostamo , Mahesh Kumar , Tom Laeven , Thorvald Larsen , Kongyi Li , Tyler Lindemann , Julie Love , Roman Lutchyn , Michael Manfra , Elvedin Memisevic , Chetan Nayak , Bas Nijholt , Morten Hannibal Madsen , Signe Markussen , Esteban Martinez , Robert McNeil , Andrew Mullally , Jens Nielsen , Anne Nurmohamed , Eoin O'Farrell , Keita Otani , Sebastian Pauka , Karl Petersson , Luca Petit , Dima Pikulin , Frank Preiss , Marina Quintero Perez , Katrine Rasmussen , Mohana Rajpalke , Davydas Razmadze , Outi Reentila , David Reilly , Richard Rouse , Ivan Sadovskyy , Lauri Sainiemi , Sydney Schreppler , Vadim Sidorkin , Amrita Singh , Shilpi Singh , Sarat Sinha , Patrick Sohr , Tomaš Stankevič , Lieuwe Stek , Henri Suominen , Judith Suter , Vicky Svidenko , Sam Teicher , Mine Temuerhan , Nivetha Thiyagarajah , Raj Tholapi , Mason Thomas , Emily Toomey , Shivendra Upadhyay , Ivan Urban , Saulius Vaitiekėnas , Kevin Van Hoogdalem , Dmitrii V. Viazmitinov , Steven Waddy , David Van Woerkom , Dominik Vogel , John Watson , Joseph Weston , Georg W. Winkler , Chung Kai Yang , Sean Yau , Daniel Yi , Emrah Yucelen , Alex Webster , Roland Zeisel , Ruichen Zhao

We show a hard induced superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic fields of $250$ mT, an important step towards creating and detecting Majorana zero modes in this system. A hard induced gap requires…

Existing scalable superconducting quantum processors have only nearest-neighbor coupling. This leads to reduced circuit depth, requiring large series of gates to perform an arbitrary unitary operation in such systems. Recently, multi-modal…

We realize a single-Josephson-junction transmon qubit shunted by a simple geometric inductor. We couple it capacitively to a conventional transmon and show that the ZZ interaction between the two qubits is completely suppressed when they…

Qubit information processors are increasing in footprint but currently rely on e-beam lithography for patterning the required Josephson junctions (JJs). Advanced optical lithography is an alternative patterning method, and we report on the…

Quantum computing systems and fundamental physics experiments using superconducting technologies frequently require signal amplification chains operating near the quantum limit of added noise. Both Josephson parametric amplifiers (JPAs) and…

Superconducting qubits in today's quantum processing units are typically fabricated with angle-evaporated aluminum--aluminum-oxide--aluminum Josephson junctions. However, there is an urgent need to overcome the limited reproducibility of…

Despite mounting evidence that materials imperfections are a major obstacle to practical applications of superconducting qubits, connections between microscopic material properties and qubit coherence are poorly understood. Here, we perform…

Hybrid superconductor/semiconductor devices constitute a powerful platform where intriguing topological properties can be investigated. Here we present fabrication methods and analysis of Josephson junctions formed by a high-mobility InAs…

Mesoscale and Nanoscale Physics · Physics 2019-01-15 Stefano Guiducci , Matteo Carrega , Giorgio Biasiol , Lucia Sorba , Fabio Beltram , Stefan Heun

We present a detailed theoretical study of chiral topological superconductor phases in proximity-superconducting graphene systems based on an effective model inspired by DFT simulations. Inducing s-wave superconductivity to quantum…

Mesoscale and Nanoscale Physics · Physics 2020-09-10 Petra Högl , Tobias Frank , Denis Kochan , Martin Gmitra , Jaroslav Fabian

We propose a tunable nonlinear interaction for the implementation of quantum logic operations on pairs of superconducting resonators, where the two-resonator interaction is mediated by a transmon quantum bit (qubit). This interaction is…

Quantum Physics · Physics 2018-07-12 Frederick W. Strauch , Matteo Mariantoni

The increasingly complex quantum electronic circuits with a number of coupled quantum degrees of freedom will become intractable to be simulated on classical computers, and requires quantum computers for an efficient simulation. In turn, it…

In superconducting quantum circuits, aluminum is one of the most widely used materials. It is currently also the superconductor of choice for the development of topological qubits. In this application, however, aluminum-based devices suffer…

By introducing a superconducting gap in Weyl- or Dirac semi-metals, the superconducting state inherits the non-trivial topology of their electronic structure. As a result, Weyl superconductors are expected to host exotic phenomena such as…

Superconducting quantum processors comprising flux-tunable data and coupler qubits are a promising platform for quantum computation. However, magnetic flux crosstalk between the flux-control lines and the constituent qubits impedes…