Recent Articles

Unitary Synthesis with Fewer T Gates

Xinyu Tan

PRX Quantum 7, 033058 (2026) - Published 16 September, 2026

A new compilation algorithm asymptotically reduces the number of T gates needed to implement an arbitrary unitary quantum operation.

Fundamental Limitations on the Reliabilities of Power and Work in Quantum Batteries

Brij Mohan, Tanmoy Pandit, Maciej Lewenstein, and Manabendra Nath Bera

PRX Quantum 7, 033057 (2026) - Published 15 September, 2026

A fundamental quantum uncertainty relation reveals an unavoidable trade-off between the reliabilities of the charging power and the work deposited during the charging and discharging of quantum batteries, establishing essential design limits for future quantum energy storage.

Ultra-Slow Orbital and Spin Dynamics in an Electrically Tunable Quantum Dot Molecule

Christopher Thalacker, Michelle Lienhart, Markus Stöcker, Nadeem Akhlaq, Irina Ivanova, Nikolai Bart, Arne Ludwig, Johannes Schall, Stephan Reitzenstein, Dirk Reuter, Steffen Wilksen, Christopher Gies, Krzysztof Gawarecki, Paweł Machnikowski, Kai Müller, and Jonathan Finley

PRX Quantum 7, 033056 (2026) - Published 14 September, 2026

A new study demonstrates the optical charging of spins in a quantum dot molecule, while keeping the tunability of its parameter, which can become an important building block for multidimensional photonic cluster state generation.

In Situ Benchmarking of Fault-Tolerant Quantum Circuits: Clifford Circuits

Xiao Xiao, Dominik Hangleiter, Dolev Bluvstein, Mikhail D. Lukin, and Michael J. Gullans

PRX Quantum 7, 033055 (2026) - Published 14 September, 2026

Using only existing error syndrome data and no additional calibration circuits, it is possible to efficiently benchmark quantum hardware and verify encoded computations.

Modeling the Impact of Device Imperfections on Electron Shuttling in SiMOS devices

Jack J. Turner, Christian W. Binder, Guido Burkard, and Andrew J. Fisher

PRX Quantum 7, 033054 (2026) - Published 11 September, 2026

Three-dimensional simulations of electron shuttling in realistic SiMOS devices are presented, identifying operating regimes resilient to common device imperfections and charge defects.

Logical Accreditation: A Framework for Efficient Certification of Fault-Tolerant Computations

James Mills, Adithya Sireesh, Dominik Leichtle, Joschka Roffe, and Elham Kashefi

PRX Quantum 7, 033053 (2026) - Published 11 September, 2026

Verification of encoded quantum systems is made possible with a scalable tool that assesses computational accuracy under general device noise.

Circuit-Based Characterization of Finite-Temperature Quantum Phases and Self-Correcting Quantum Memory

Ruochen Ma, Vedika Khemani, and Shengqi Sang

PRX Quantum 7, 033052 (2026) - Published 10 September, 2026

A circuit-based framework characterizing thermal quantum phases via a correlation-decay condition is presented, establishing self-correction as a universal property of finite-temperature quantum memories.

Finite-Size Quantum Key Distribution Rates from Rényi Entropies Using Conic Optimization

Mariana Navarro, Andrés González Lorente, Pablo V. Parellada, Carlos Pascual-García, and Mateus Araújo

PRX Quantum 7, 033051 (2026) - Published 10 September, 2026

A conic optimization method addressing a critical challenge in key rate estimation for quantum key distribution is presented, providing tighter security bounds and fast numerical convergence.

Moments of Quantum Channel Ensembles

Matthew Duschenes, Diego García-Martín, Zoë Holmes, and M. Cerezo

PRX Quantum 7, 033050 (2026) - Published 9 September, 2026

A general framework for the study of statistical moments of quantum channel ensembles is introduced, providing new insights into noisy quantum circuits and variational quantum algorithms.

Complexity of Quantum Trajectories

Luca Lumia, Emanuele Tirrito, Mario Collura, Fabian H. L. Essler, and Rosario Fazio

PRX Quantum 7, 033049 (2026) - Published 9 September, 2026

An unsupervised, data-driven framework based on the intrinsic dimension of quantum trajectories provides a robust probe for detecting integrability and ergodicity breaking in open quantum systems beyond the transient regime, while new results on autonomous chaos are discussed.

A Heuristic for Matrix Product State Simulation of Out-of-Equilibrium Dynamics of Two-Dimensional Quantum Spin Systems

Salvatore Mandrà, Brayden Ware, Nikita Astrakhantsev, Sergei Isakov, Benjamin Villalonga, Tom Westerhout, and Kostyantyn Kechedzhi

PRX Quantum 7, 033048 (2026) - Published 8 September, 2026

A new heuristic approach accelerates the convergence of classical simulation of two-dimensional quantum dynamics, enabling the verification of quantum simulation experiments in previously inaccessible regimes.

Quantum State Designs from Minimally Random Quantum Circuits

Jonathon Riddell, Katja Klobas, and Bruno Bertini

PRX Quantum 7, 033047 (2026) - Published 8 September, 2026

For quantum circuits that generate complex dynamics, a single, one-site operation is sufficient to produce randomness, showcasing a trade-off between dynamical chaos and randomness.

Exponentially Accurate Open Quantum Simulation via Randomized Dissipation with Minimal Ancilla

Jumpei Kato, Kaito Wada, Kosuke Ito, and Naoki Yamamoto

PRX Quantum 7, 033046 (2026) - Published 4 September, 2026

Exponentially accurate simulation of open quantum systems is made viable for early fault-tolerant devices via a random compilation method requiring a minimal number of ancilla qubits.

Disambiguating Pauli Noise in Quantum Computers

Edward H. Chen, Senrui Chen, Laurin E. Fischer, Andrew Eddins, Luke C. G. Govia, Brad Mitchell, Andre He, Youngseok Kim, Liang Jiang, and Alireza Seif

PRX Quantum 7, 033045 (2026) - Published 3 September, 2026

The unavoidable “gauge” ambiguity in learning a quantum computer’s noise does not hinder error mitigation, and this remaining degree of freedom can even be optimized to make mitigation dramatically more efficient.

Efficient Entanglement Purification Circuit Design for Dual-Species Atom Arrays

Bikun Li, Daniel Dilley, Alvin Gonzales, Thomas A. Hahn, Ryan White, Rotem Arnon, Hannes Bernien, Zain Saleem, and Liang Jiang

PRX Quantum 7, 033044 (2026) - Published 2 September, 2026

A dual-species atomic array reduces technical overhead (no local addressing needed and nondestructive midcircuit measurements) and enables efficient entanglement purification for applications in quantum networking and distributed computation.

Andreev-Enhanced Conductance Quantization and Gate-Tunable Induced Superconducting Gap in Germanium

Elyjah Kiyooka, Chotivut Tangchingchai, Gonzalo Troncoso Fernandez-Bada, Boris Brun-Barriere, Simon Zihlmann, Romain Maurand, Francois Lefloch, Vivien Schmitt, Jean-Michel Hartmann, Manuel Houzet, and Silvano De Franceschi

PRX Quantum 7, 033043 (2026) - Published 1 September, 2026

Experiments in Ge/SiGe quantum point contacts demonstrate a gate-tunable proximity-induced superconducting gap and near-ideal superconducting conductance quantization in excellent agreement with theory.

Dispersive Qubit Readout with Intrinsic Resonator Reset

M. Jerger, F. Motzoi, Y. Gao, C. Dickel, L. Buchmann, F. A. Cárdenas-López, A. Bengtsson, G. Tancredi, C. W. Warren, J. Bylander, D. DiVincenzo, R. Barends, and P. A. Bushev

PRX Quantum 7, 033042 (2026) - Published 31 August, 2026

Researchers experimentally demonstrate a new method for large-bandwidth dispersive readout, with built-in resonator reset, providing potential applications in quantum error correction.

Holographic Duality Between Bulk Topological Order and Boundary Mixed-State Order

Tsung-Cheng Lu, Yu-Jie Liu, Sarang Gopalakrishnan, and Yizhi You

PRX Quantum 7, 033041 (2026) - Published 28 August, 2026

Mapping open quantum systems to higher-dimensional topological order provides a new framework for characterizing strong-to-weak symmetry breaking and nonequilibrium quantum phases.

Analytical Blueprint for 99.999% Fidelity X-Gates on Present Superconducting Hardware Under Strong Driving

José Diogo Da Costa Jesus, Boxi Li, Yuan Gao, Rami Barends, Francisco Andrés Cárdenas-López, and Felix Motzoi

PRX Quantum 7, 033040 (2026) - Published 27 August, 2026

A new analytical pulse-shaping framework extends DRAG protocols to suppress multiphoton leakage in strongly driven superconducting transmons, enabling ultrafast single-qubit gates with fidelities exceeding 99.99%.

Systematic Construction of Time-Dependent Hamiltonians for Microwave-Driven Josephson Circuits

Yao Lu, Tianpu Zhao, André Vallières, Kevin C. Smith, Daniel Weiss, Xinyuan You, Yaxing Zhang, Suhas Ganjam, Aniket Maiti, John W. O. Garmon, Shantanu Mundhada, Ziwen Huang, Ian Mondragon-Shem, Steven M. Girvin, Jens Koch, and Robert J. Schoelkopf

PRX Quantum 7, 033039 (2026) - Published 27 August, 2026

A versatile framework bridges layout-level microwave simulations with quantum dynamics, enabling realistic modeling of driven superconducting circuits beyond simplified lumped-element descriptions.

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