Recent Articles

Shaping Quantum Noise through Cascaded Nonlinear Processes in a Dissipation-Engineered Multimode Cavity

Sahil Pontula, Yannick Salamin, Charles Roques-Carmes, and Marin Soljačić

PRX Quantum 5, 040345 (2024) - Published 18 December, 2024

Dissipation engineering in multimode nonlinear cavities enables bright squeezing across discrete frequency modes, with applications in quantum sensing, communication, and topological photonics.

Approximate t-Designs in Generic Circuit Architectures

Daniel Belkin, James Allen, Soumik Ghosh, Christopher Kang, Sophia Lin, James Sud, Frederic T. Chong, Bill Fefferman, and Bryan K. Clark

PRX Quantum 5, 040344 (2024) - Published 17 December, 2024

Random circuits with general architectures scramble information at least linearly as circuit depth increases.

Circuit-Based Leakage-to-Erasure Conversion in a Neutral-Atom Quantum Processor

Matthew N. H. Chow, Vikas Buchemmavari, Sivaprasad Omanakuttan, Bethany J. Little, Saurabh Pandey, Ivan H. Deutsch, and Yuan-Yu Jau

PRX Quantum 5, 040343 (2024) - Published 16 December, 2024

Atom loss is detected during computation without disturbing the quantum state, an important task for long computations with neutral atoms.

Suppressing Counter-Rotating Errors for Fast Single-Qubit Gates with Fluxonium

David A. Rower, Leon Ding, Helin Zhang, Max Hays, Junyoung An, Patrick M. Harrington, Ilan T. Rosen, Jeffrey M. Gertler, Thomas M. Hazard, Bethany M. Niedzielski, Mollie E. Schwartz, Simon Gustavsson, Kyle Serniak, Jeffrey A. Grover, and William D. Oliver

PRX Quantum 5, 040342 (2024) - Published 13 December, 2024

Two methods that combat counterrotating effects in fast Rabi-based gates are deployed in experiment to yield reliably high fidelity.

Local Control and Mixed Dimensions: Exploring High-Temperature Superconductivity in Optical Lattices

Henning Schlömer, Hannah Lange, Titus Franz, Thomas Chalopin, Petar Bojović, Si Wang, Immanuel Bloch, Timon A. Hilker, Fabian Grusdt, and Annabelle Bohrdt

PRX Quantum 5, 040341 (2024) - Published 12 December, 2024

Researchers demonstrate how local control and bilayer optical lattices can simulate nickelate and cuprate high-temperature superconductors, enabling the study of long-range superconducting order and d-wave pairing physics.

Flag Gadgets Based on Classical Codes

Benjamin Anker and Milad Marvian

PRX Quantum 5, 040340 (2024) - Published 10 December, 2024

A novel framework to design flag gadgets broadly applicable to many quantum codes is used to perform fault-tolerant syndrome extraction using exponentially fewer qubits than conventional methods.

Initial State Preparation for Quantum Chemistry on Quantum Computers

Stepan Fomichev, Kasra Hejazi, Modjtaba Shokrian Zini, Matthew Kiser, Joana Fraxanet, Pablo Antonio Moreno Casares, Alain Delgado, Joonsuk Huh, Arne-Christian Voigt, Jonathan E. Mueller, and Juan Miguel Arrazola

PRX Quantum 5, 040339 (2024) - Published 9 December, 2024

A novel, cost-efficient method for preparing good initial states for ground-state energy estimation is used to suggest the most promising ground-state problems for exhibiting quantum advantage.

Quantum Wire Coupled to Light

Victor Bradley, Kamal Sharma, Mohammad Hafezi, and Wade DeGottardi

PRX Quantum 5, 040338 (2024) - Published 6 December, 2024

The generation of many-body entanglement from repeated emission of photons leads to superradiance in one-dimensional electron gases.

Benchmarking Bosonic Modes for Quantum Information with Randomized Displacements

Christophe H. Valahu, Tomas Navickas, Michael J. Biercuk, and Ting Rei Tan

PRX Quantum 5, 040337 (2024) - Published 5 December, 2024

An efficient, cross-platform method for benchmarking bosonic modes by applying randomized displacements can identify underlying noise using few measurements.

Symmetry-Enforced Entanglement in Maximally Mixed States

Amin Moharramipour, Leonardo A. Lessa, Chong Wang, Timothy H. Hsieh, and Subhayan Sahu

PRX Quantum 5, 040336 (2024) - Published 4 December, 2024

New results show that in strongly symmetric quantum channels, the maximally mixed steady state can attain logarithmically scaling entanglement in the presence of non-Abelian continuous symmetries.

Directional Superradiance in a Driven Ultracold Atomic Gas in Free Space

Sanaa Agarwal, Edwin Chaparro, Diego Barberena, A. Piñeiro Orioli, G. Ferioli, S. Pancaldi, I. Ferrier-Barbut, A. Browaeys, and A.M. Rey

PRX Quantum 5, 040335 (2024) - Published 3 December, 2024

For dense, disordered gases with strong excitations, new insight based on mean-field approximation captures emergent properties and is validated in experiments.

Creating Entangled Logical Qubits in the Heavy-Hex Lattice with Topological Codes

Bence Hetényi and James R. Wootton

PRX Quantum 5, 040334 (2024) - Published 3 December, 2024

By interleaving two error-correction codes with each other, logical qubits are entangled using only local entangling gates on quantum hardware with restricted connectivity.

Cavity Microscope for Micrometer-Scale Control of Atom-Photon Interactions

Francesca Orsi, Nick Sauerwein, Rohit Prasad Bhatt, Jonas Faltinath, Ekaterina Fedotova, Nicola Reiter, Tigrane Cantat-Moltrecht, and Jean-Philippe Brantut

PRX Quantum 5, 040333 (2024) - Published 2 December, 2024

This novel cavity microscope combines the enhanced sensitivity of cavity quantum electrodynamics with the manipulation of atom-light interactions at high-spatial resolution.

Laser-Painted Cavity-Mediated Interactions in a Quantum Gas

Mariano Bonifacio, Francesco Piazza, and Tobias Donner

PRX Quantum 5, 040332 (2024) - Published 2 December, 2024

A method for creating fully tunable and highly controlled atom-atom interactions in quantum gases enables new investigations of materials properties and applications in quantum simulation.

Enhanced Quantum Emission from a Topological Floquet Resonance

Shirin Afzal, Tyler J. Zimmerling, Mahdi Rizvandi, Majid Taghavi, Leili Esmaeilifar, Taras Hrushevskyi, Manpreet Kaur, Vien Van, and Shabir Barzanjeh

PRX Quantum 5, 040331 (2024) - Published 27 November, 2024

A high entangled-pair generation rate is made possible by a topological resonance, providing protection against fabrication imperfections.

Symmetries as Ground States of Local Superoperators: Hydrodynamic Implications

Sanjay Moudgalya and Olexei I. Motrunich

PRX Quantum 5, 040330 (2024) - Published 27 November, 2024

A systematic link between conventional and unconventional symmetries and their corresponding hydrodynamic modes is established by interpreting symmetry operators as ground states of local superoperators.

A Framework for Fully Programmable Frequency-Encoded Quantum Networks Harnessing Multioutput Quantum Pulse Gates

Patrick Folge, Michael Stefszky, Benjamin Brecht, and Christine Silberhorn

PRX Quantum 5, 040329 (2024) - Published 26 November, 2024

Single-spatial-mode interferometers are made through the design of nonlinear processes, enabling resource-efficient linear quantum networks.

Towards Early Fault Tolerance on a 2×N Array of Qubits Equipped with Shuttling

Adam Siegel, Armands Strikis, and Michael Fogarty

PRX Quantum 5, 040328 (2024) - Published 25 November, 2024

Error correction on highly constrained architectures equipped with shuttling is not only possible but is powerful enough to support fault tolerance.

Constructions and Performance of Hyperbolic and Semi-Hyperbolic Floquet Codes

Oscar Higgott and Nikolas P. Breuckmann

PRX Quantum 5, 040327 (2024) - Published 22 November, 2024

New construction of Floquet quantum error-correction codes derived from the tiling of hyperbolic surfaces can be up to 100 times more efficient than surface codes.

Enhancing Dispersive Readout of Superconducting Qubits through Dynamic Control of the Dispersive Shift: Experiment and Theory

François Swiadek, Ross Shillito, Paul Magnard, Ants Remm, Christoph Hellings, Nathan Lacroix, Quentin Ficheux, Dante Colao Zanuz, Graham J. Norris, Alexandre Blais, Sebastian Krinner, and Andreas Wallraff

PRX Quantum 5, 040326 (2024) - Published 20 November, 2024

In situ dynamic control of the dispersive shift allows for faster- and higher-fidelity qubit readout.

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