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We describe transmon qubit dynamics in the presence of noise introduced by an impedance-matched resistor ($50\,\mathrm{\Omega}$) that is embedded in the qubit control line. To obtain the time evolution, we rigorously derive the circuit…

Quantum Physics · Physics 2022-10-14 Antti Vaaranta , Marco Cattaneo , Russell E. Lake

We propose a scheme for controlling a radio-frequency mechanical resonator at the quantum level using a superconducting qubit. The mechanical part of the circuit consists of a suspended micrometer-long beam that is embedded in the loop of a…

Quantum Physics · Physics 2020-06-16 Marios Kounalakis , Yaroslav M. Blanter , Gary A. Steele

Linear optical quantum computing (LOQC) provides a compelling approach to quantum information processing, with a short list of physical requirements; however, experimental implementations have faced significant challenges. Itinerant phonons…

We present an exact ansatz for the eigenstate problem of mixed fermion-boson systems that can be implemented on quantum devices. Based on a generalization of the electronic contracted Schr\"odinger equation (CSE), our approach guides a…

Quantum Physics · Physics 2024-08-26 Samuel Warren , Yuchen Wang , Carlos L. Benavides-Riveros , David A. Mazziotti

Spin qubits in silicon quantum dots offer a promising platform for a quantum computer as they have a long coherence time and scalability. The charge sensing technique plays an essential role in reading out the spin qubit as well as tuning…

Mesoscale and Nanoscale Physics · Physics 2020-02-13 Akito Noiri , Kenta Takeda , Jun Yoneda , Takashi Nakajima , Tetsuo Kodera , Seigo Tarucha

The advanced nanoscale integration available in silicon complementary metal-oxide-semiconductor (CMOS) technology provides a key motivation for its use in spin-based quantum computing applications. Initial demonstrations of quantum dot…

The quantum efficiency, which characterizes the quality of information gain against information loss, is an important figure of merit for any realistic quantum detectors in the gradual process of collapsing the state being measured. In this…

Mesoscale and Nanoscale Physics · Physics 2015-03-17 Yin Ye , Jing Ping , HuJun Jiao , Shu-Shen Li , Xin-Qi Li

We present a hardware realization and measurements of a tetron qubit device in a superconductor-semiconductor heterostructure. The device architecture contains two parallel superconducting nanowires, which support four Majorana zero modes…

Mesoscale and Nanoscale Physics · Physics 2025-09-05 Morteza Aghaee , Zulfi Alam , Rikke Andersen , Mariusz Andrzejczuk , Andrey Antipov , Mikhail Astafev , Lukas Avilovas , Ahmad Azizimanesh , Eric Banek , Bela Bauer , Jonathan Becker , Umesh Kumar Bhaskar , Andrea G. Boa , Srini Boddapati , Nichlaus Bohac , Jouri D. S. Bommer , Jan Borovsky , Léo Bourdet , Samuel Boutin , Lucas Casparis , Srivatsa Chakravarthi , Hamidreza Chalabi , Benjamin J. Chapman , Nikolaos Chatzaras , Tzu-Chiao Chien , Jason Cho , Patrick Codd , William Cole , Paul W. Cooper , Fabiano Corsetti , Ajuan Cui , Tareq El Dandachi , Celine Dinesen , Andreas Ekefjärd , Saeed Fallahi , Luca Galletti , Geoffrey C. Gardner , Gonzalo Leon Gonzalez , Deshan Govender , Flavio Griggio , Ruben Grigoryan , Sebastian Grijalva , Sergei Gronin , Jan Gukelberger , Marzie Hamdast , A. Ben Hamida , Esben Bork Hansen , Caroline Tynell Hansen , Sebastian Heedt , Samantha Ho , Laurens Holgaard , Kevin van Hoogdalem , John Hornibrook , Henrik Ingerslev , Lovro Ivancevic , Sherwan Jamo , Max Jantos , Thomas Jensen , Jaspreet Singh Jhoja , Jeffrey C Jones , Vidul Joshi , Konstantin V. Kalashnikov , Ray Kallaher , Rachpon Kalra , Farhad Karimi , Torsten Karzig , Seth Kimes , Evelyn King , Maren Elisabeth Kloster , Christina Knapp , Jonne V. Koski , Pasi Kostamo , Tom Laeven , Jeffrey Lai , Gijs de Lange , Thorvald W. Larsen , Kyunghoon Lee , Kongyi Li , Guangze Li , Shuang Liang , Tyler Lindemann , Matthew Looij , Marijn Lucas , Roman Lutchyn , Morten Hannibal Madsen , Nasiari Madulid , Michael J. Manfra , Laveena Manjunath , Signe Markussen , Esteban Martinez , Marco Mattila , J. R. Mattinson , R. P. G. McNeil , Alba Pérez Millan , Ryan V. Mishmash , Sarang Mittal , Christian Møllgaard , M. W. A. de Moor , Eduardo Puchol Morejon , Trevor Morgan , George Moussa , B. P. Nabar , Anirudh Narla , Chetan Nayak , Jens Hedegaard Nielsen , William Hvidtfelt Padkær Nielsen , Frédéric Nolet , Michael J. Nystrom , Eoin O'Farrell , Thomas A. Ohki , Keita Otani , Camille Papon , Karl D Petersson , Luca Petit , Dima Pikulin , Mohana Rajpalke , Alejandro Alcaraz Ramirez , David Razmadze , Yuan Ren , Ivan Sadovskyy , Lauri Sainiemi , Juan Carlos Estrada Saldaña , Irene Sanlorenzo , Tatiane Pereira dos Santos , Simon Schaal , John Schack , Emma R. Schmidgall , Christina Sfetsou , Cristina Sfiligoj , Sarat Sinha , Patrick Sohr , Thomas L. Sørensen , Kasper Spiegelhauer , Tomaš Stankević , Lieuwe J. Stek , Patrick Strøm-Hansen , Henri J. Suominen , Judith Suter , Samuel M. L. Teicher , Raj Tholapi , Mason Thomas , D. W. Tom , Emily Toomey , Joshua Tracy , Michelle Turley , Matthew D. Turner , Shivendra Upadhyay , Ivan Urban , Dmitrii V. Viazmitinov , Anna Wulff Viazmitinova , Beatriz Viegas , Dominik J. Vogel , John Watson , Alex Webster , Joseph Weston , Timothy Williamson , Georg W. Winkler , David J. van Woerkom , Brian Paquelet Wuetz , Chung-Kai Yang , Shang-Jyun , Yu , Emrah Yucelen , Jesús Herranz Zamorano , Roland Zeisel , Guoji Zheng , A. M. Zimmerman

Massive objects in spatial superposition may provide insights into the interplay between quantum mechanics and gravity. Cold atomic interferometers offer a promising platform due to extended matter-wave coherence times and precise…

Quantum Gases · Physics 2026-05-13 Han Zhang , Yong-Kui Wang , Yi Zheng , Hai-Tao Bai , Bing Yang

The Kibble-Zurek mechanism (KZM) captures the key physics in the non-equilibrium dynamics of second-order phase transitions, and accurately predict the density of the topological defects formed in this process. However, despite much effort,…

Quantum Physics · Physics 2014-12-11 Xiao-Ye Xu , Yong-Jian Han , Kai Sun , Jin-Shi Xu , Jian-Shun Tang , Chuan-Feng Li , Guang-Can Guo

Hybrid quantum devices expand the tools and techniques available for quantum sensing in various fields. Here, we experimentally demonstrate quantum sensing of the steady-state magnon population in a magnetostatic mode of a ferrimagnetic…

We present the first observation of Landau-Zener-St\"{u}ckelberg (LZS) interference of the dressed states arising from an artificial atom, a superconducting phase qubit, interacting with a microwave field. The dependence of LZS interference…

Mesoscale and Nanoscale Physics · Physics 2013-05-29 Guozhu Sun , Xueda Wen , Bo Mao , Yang Yu , Jian Chen , Weiwei Xu , Lin Kang , Peiheng Wu , Siyuan Han

We propose quantum circuits to test interferometric complementarity using symmetric two-way interferometers coupled to a which-path detector. First, we consider the two-qubit setup in which the controlled transfer of path information to the…

Quantum Physics · Physics 2021-09-29 Pedro M. Q. Cruz , J. Fernández-Rossier

A photonics-assisted joint communication-radar system is proposed and experimentally demonstrated, by introducing a quadrature phase-shift keying (QPSK)-sliced linearly frequency-modulated (LFM) signal. An LFM signal is carrier-suppressed…

Signal Processing · Electrical Eng. & Systems 2022-06-08 Shi Wang , Dingding Liang , Yang Chen

Coherent interconnects between gate-defined silicon quantum processing units are essential for scalable quantum computation and long-range entanglement. We argue that one-dimensional electron channels formed in the silicon quantum well of a…

Mesoscale and Nanoscale Physics · Physics 2026-01-12 Anantha S. Rao , Christopher David White , Sean R. Muleady , Anthony Sigillito , Michael J. Gullans

Transmon qubits are ubiquitous in the pursuit of quantum computing using superconducting circuits. However, they have some drawbacks that still need to be addressed. Most importantly, the scalability of transmons is limited by the large…

Quantum Physics · Physics 2020-12-03 R. Zhao , S. Park , T. Zhao , M. Bal , C. R. H. McRae , J. Long , D. P. Pappas

Hybrid devices based on the superconducting qubits have emerged as a promising platform for controlling the quantum states of macroscopic resonators. The nonlinearity added by a qubit can be a valuable resource for such control. Here we…

Mesoscale and Nanoscale Physics · Physics 2022-09-27 Sourav Majumder , Tanmoy Bera , Vibhor Singh

We study the quantum transition from a strongly correlated metal, with heavy fermionic quasiparticles, to a metal with commensurate charge or spin density wave order. To this end, we introduce and numerically analyze a large dimensionality…

Condensed Matter · Physics 2009-10-28 Subir Sachdev , Antoine Georges

We consider theoretically the transport properties of a spinless resonant electronic level coupled to strongly dissipative leads, in the regime of circuit impedance near the resistance quantum. Using the Luttinger liquid analogy, one…

Mesoscale and Nanoscale Physics · Physics 2014-07-02 Huaixiu Zheng , Serge Florens , Harold U. Baranger