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Dispersive sensing is a powerful technique that enables scalable and high-fidelity readout of solid-state quantum bits. In particular, gate-based dispersive sensing has been proposed as the readout mechanism for future topological qubits,…

Mesoscale and Nanoscale Physics · Physics 2019-04-24 Damaz de Jong , Jasper van Veen , Luca Binci , Amrita Singh , Peter Krogstrup , Leo P. Kouwenhoven , Wolfgang Pfaff , John D. Watson

We characterize a novel Josephson parametric amplifier based on a flux-tunable quarter-wavelength resonator. The fundamental resonance frequency is ~1GHz, but we use higher modes of the resonator for our measurements. An on-chip tuning line…

Mesoscale and Nanoscale Physics · Physics 2015-11-12 M. Simoen , C. W. S. Chang , P. Krantz , Jonas Bylander , W. Wustmann , V. Shumeiko , P. Delsing , C. M. Wilson

We analyze the design of a potential replacement technology for the commercial ferrite circulators that are ubiquitous in contemporary quantum superconducting microwave experiments. The lossless, lumped element design is capable of being…

Flux transformers and superconducting quantum interference devices (SQUIDs) are two key superconducting devices used in the cutting-edge magnetic-field sensor systems, such as magnetocardiography (MCG) and magnetoencephalography (MEG). They…

Instrumentation and Detectors · Physics 2023-10-03 Yongliang Wang

Digital Frequency-Domain Multiplexing (DfMux) is a technique that uses MHz superconducting resonators and Superconducting Quantum Interference Device (SQUID) arrays to read out sets of Transition Edge Sensors. DfMux has been used by several…

A novel setup for the measurement of magnetic fields external to certain antiferromagnets and generally weakly remanent magnetic materials is presented. The setup features a highly sensitive Super Conducting Quantum Interference Device…

The resonant enhancement of both mechanical and optical response in microcavity optomechanical devices allows exquisitely sensitive measurements of stimuli such as acceleration, mass and magnetic fields. In this work, we show that quantum…

We present a single-quadrature feedback scheme able to overcome the conventional 3 dB limit on parametric squeezing. The method is experimentally demonstrated in a micromechanical system based on a cantilever with a magnetic tip. The…

Mesoscale and Nanoscale Physics · Physics 2016-01-08 Andrea Vinante , Paolo Falferi

The measurement of a quantum system is often performed by encoding its state in a single observable of a light field. The measurement efficiency of this observable can be reduced by loss or excess noise on the way to the detector. Even a…

Micron-sized superconducting interference devices ($\mu$-SQUIDs) based on constrictions optimized for minimizing thermal runaway are shown to exhibit voltage oscillations with applied magnetic flux despite their hysteretic behavior. We…

Superconductivity · Physics 2018-11-28 Sourav Biswas , Clemens B. Winkelmann , Hervé Courtois , Anjan K. Gupta

The Microwave SQUID Multiplexer ({\mu}MUX) is the device of choice for the readout of a large number of Low-Temperature Detectors in a wide variety of experiments within the fields of astronomy and particle physics. While it offers large…

Superconducting quantum interference devices (SQUIDs) are exceptionally sensitive magnetometers capable of detecting weak magnetic fields. Miniaturizing these devices and integrating them onto scanning probes enables high-resolution imaging…

Superconducting diodes, characterized by the nonreciprocal supercurrent flow, have gained significant attention for their potential in dissipationless electronics. This study presents a superconducting quantum interference device (SQUID)…

Superconductivity · Physics 2025-02-28 Xingjun Wu , Ji-Yin Wang , Haitian Su , Shili Yan , Dong Pan , Jianhua Zhao , Po Zhang , H. Q. Xu

We present the design, fabrication, and characterization of an aluminum-based six-channel microwave SQUID multiplexer ($\mu$MUX) prototype for transition-edge sensor (TES) readout in the RICOCHET experiment. The device consists of aluminum…

Instrumentation and Detectors · Physics 2026-05-26 James Amidei , Antoine Armatol , Corinne Augier , Louis Bailly-Salins , Guillaume Baulieu , Laurent Bergé , Julien Billard , Juliette Blé , Gaby Brenot , Guillaume Bres , Jean-Louis Bret , Alexandre Broniatowski , Martino Calvo , Antonella Cavanna , Antoine Cazes , Emanuela Celi , David Chaize , Mohammed Chala , Maurice Chapellier , Luke Chaplinsky , Ran Chen , Ion Cojocari , Jules Colas , Laurent Couraud , Elspeth Cudmore , Maryvonne De Jesus , Pierre de Marcillac , Nicole Dombrowski , Louis Dumoulin , Alan Durnez , Romain Faure , Sylvain Ferriol , Enectali Figueroa-Feliciano , Joseph A. Formaggio , Stephane Fuard , Jules Gascon , Cloé Girard-Carillo , Andrea Giuliani , Corinne Goy , Cyrille Guerin , Leïla Haegel , Patrick M. Harrington , Scott A. Hertel , Cyrus F. Hirjibehedin , Christophe Hoarau , Ziqing Hong , Daemon Howard , Jean-Christophe Ianigro , Yong Jin , Alexandre Juillard , Dimitar Karaivanov , Temirlan Khussainov , Andrew Kubik , Jacob Lamblin , Tatiana Le Bellec , Laetitia Leroy , Mingyu Li , Alexey Lubashevskiy , Stefanos Marnieros , Romain Martin , Nicolas Martini , Julien Minet , Alessandro Monfardini , Franck Mounier , Bethany M. Niedzielski , Valentina Novati , Wiliam D. Oliver , Emiliano Olivieri , H. Douglas Pinckney , Denys V. Poda , Dmitrii Ponomarev , Jean-Sébastien Real , Faith C. Reyes , Alejandro Rodriguez , Sergey Rozov , Irina Rozova , Brianna Ryan , Deeksha Sabhari , Silvia Scorza , Kyle Serniak , Renaud Serra , Yegor Shevchik , Torsten Soldner , Hannah Stickler , Caitlyn Stone-Whitehead , Christian Ulysse , Wouter Van De Pontseele , Sergey Vasilyev , Paul Vittaz , Steven Weber , Evan Wolfe , Wayne Woods , Evgeny Yakushev , Jiatong Yang , Daniya Zinatulina

We study a system of two nanomechanical resonators embedded in a dc SQUID. We show that the inductively-coupled resonators can be treated as two entangled quantum memory elements with states that can be read from, or written on by employing…

Mesoscale and Nanoscale Physics · Physics 2013-02-08 Guy Z. Cohen , Massimiliano Di Ventra

Superconducting QUantum-Interference Devices (SQUIDs) make magnetic resonance imaging (MRI) possible in ultra-low microtesla-range magnetic fields. In this work, we investigate the design parameters affecting the signal and noise…

Instrumentation and Detectors · Physics 2020-01-16 Koos C. J. Zevenhoven , Antti J. Mäkinen , Risto J. Ilmoniemi

Dispersive charge sensing is realized in hybrid semiconductor-superconductor nanowires in gate-defined single- and double-island device geometries. Signal-to-noise ratios (SNRs) were measured both in the frequency and time domain.…

We describe a possible implementation of the nanomechanical quantum superposition generation and detection scheme described in the preceding, companion paper [Armour A D and Blencowe M P 2008 New. J. Phys. Submitted]. The implementation is…

Quantum Physics · Physics 2009-05-06 M. P. Blencowe , A. D. Armour

The quantum state of a superconducting qubit nonresonantly coupled to a transmission line resonator can be determined by measuring the quadrature amplitudes of an electromagnetic field transmitted through the resonator. We present…

Mesoscale and Nanoscale Physics · Physics 2009-11-09 R. Bianchetti , S. Filipp , M. Baur , J. M. Fink , M. Göppl , P. J. Leek , L. Steffen , A. Blais , A. Wallraff

We have performed spectroscopic measurements of a superconducting qubit dispersively coupled to a nonlinear resonator driven by a pump microwave field. Measurements of the qubit frequency shift provide a sensitive probe of the intracavity…

Mesoscale and Nanoscale Physics · Physics 2015-03-17 F. R. Ong , M. Boissonneault , F. Mallet , A. Palacios-Laloy , A. Dewes , A. C. Doherty , A. Blais , P. Bertet , D. Vion , D. Esteve
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