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In traveling-wave parametric amplifiers (TWPAs) low-loss capacitors are necessary to provide 50 $\Omega$ impedance matching to the increased inductance that is brought in by the nonlinear elements used for amplification, be it Josephson…

Quantum Physics · Physics 2025-09-10 Christian Schlager , Romain Albert , Gerhard Kirchmair

For modern high-intensity linear accelerators, the well-known envelope instability and recently reported fourth-order particle resonance impose a fundamental operational limit (i.e., zero-current phase advance should be less than 90 deg).…

Accelerator Physics · Physics 2021-08-18 Yoo-Lim Cheon , Seok-Ho Moon , Moses Chung , Dong-O Jeon

The discovery of high-transition temperature (high-Tc) superconductivity near antiferromagnetism in iron arsenides raised the possibility of an unconventional superconducting mechansim1-8. The observation of clear Fermi surfaces and…

Superinductors have become a crucial component in the superconducting circuit toolbox, playing a key role in the development of more robust qubits. Enhancing the performance of these devices can be achieved by suspending the superinductors…

Quantum point contacts (QPC) are the building blocks of quantum dot qubits and semiconducting quantum electrical metrology circuits. QPCs also make highly sensitive electrical amplifiers with the potential to operate in the quantum-limited…

Mesoscale and Nanoscale Physics · Physics 2023-11-27 Anusha Shanmugam , Prasanta Kumbhakar , Harikrishnan Sundaresan , Annu Anns Sunny , J L Reno , Madhu Thalakulam

We report on the design of loop-gap resonators (LGR) operating in the frequency range 34-36 GHz with the goal to achieve single electron spin resonance (ESR) in quantum dot nanostructures. We present a comprehensive study of the magnetic…

Mesoscale and Nanoscale Physics · Physics 2009-11-11 B. Simovic , P. Studerus , S. Gustavsson , R. Leturcq , K. Ensslin , R. Schuhmann , J. Forrer , A. Schweiger

Universal quantum computers promise to solve computational problems that are beyond the capabilities of known classical algorithms. To realize such quantum hardware on a superconducting material platform, a vast number of physical qubits…

Dielectric losses are one of the key factors limiting the coherence of superconducting qubits. The impact of materials and fabrication steps on dielectric losses can be evaluated using coplanar waveguide (CPW) microwave resonators. Here, we…

Superconductors and semiconductors are crucial platforms in the field of quantum computing. They can be combined to hybrids, bringing together physical properties that enable the discovery of new emergent phenomena and provide novel…

A spilt-ring resonator experiment suitable for senior physics undergraduates is described and demonstrated in detail. The apparatus consists of a conducting hollow cylinder with a narrow slit along its length and can be accurately modelled…

Physics Education · Physics 2018-11-06 J. S. Bobowski

The performance of state-of-the-art superconducting quantum devices is currently limited by microwave dielectric losses at different surfaces and interfaces. {\alpha}-tantalum is a superconductor that has proven effective in reducing…

We assess independently the impact of high-temperature substrate annealing and metal deposition conditions on the coherence of transmon qubits in the standard 2D circuit-QED architecture. We restrict our study to devices made with aluminum…

An integrated photonic platform is proposed for strong interactions between atomic beams and annealing-free high-quality-factor (Q) microresonators. We fabricated a thin-film, air-clad SiN microresonator with a loaded Q of $1.55\times10^6$…

Optics · Physics 2022-04-05 Ali Eshaghian Dorche , Bochao Wei , Chandra Raman , Ali Adibi

Compact, high-speed electro-optic phase modulators play a vital role in various large-scale applications including phased arrays, quantum and neural networks, and optical communication links. Conventional phase modulators suffer from a…

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…

Time-reversal symmetry breaking (TRSB) has been central to detecting exotic phases of matter. Here, we leverage the circuit electrodynamics capabilities of superconducting devices to propose a novel scheme based on a multimode…

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

By coupling a quantum detector, a superconductor-insulator-superconductor junction, to a Josephson junction \textit{via} a resonant circuit we probe the high frequency properties, namely the ac complex admittance and the current…

Mesoscale and Nanoscale Physics · Physics 2012-03-02 Julien Basset , Hélène Bouchiat , Richard Deblock

Here we investigate high frequency AC transport through narrow graphene nanoribbons with topgate potentials that form a localized quantum dot. We show that as a consequence of the finite dwell time of an electron inside the quantum dot…

Mesoscale and Nanoscale Physics · Physics 2015-05-27 Milan Begliarbekov , Stefan Strauf , Christopher P Search

We report the detection of a gate-tunable kinetic inductance in a hybrid InAs/Al nanowire. For this purpose, we have embedded the nanowire into a quarter-wave coplanar waveguide resonator and measured the resonance frequency of the circuit.…