Resources

Publications

  • Author(s): Tuomas Laakkonen, Enrico Rinaldi, Chris N. Self, Eli Chertkov, Matthew DeCross, David Hayes, Brian Neyenhuis, Marcello Benedetti, and Konstantinos Meichanetzidis A comprehensive quantum algorithmic pipeline for approximating the Jones polynomial is shown to serve as a benchmark for quantum computers and yield new insights into potential quantum advantage. [PRX Quantum 7, 020355] Published Tue Jun 09, 2026
  • Author(s): George Mihailescu, Uesli Alushi, Roberto Di Candia, Simone Felicetti, and Karol Gietka Exploiting the divergent sensitivity at quantum phase transitions provides a robust framework for surpassing classical limits in parameter estimation. [PRX Quantum 7, 020201] Published Mon Jun 08, 2026
  • Author(s): David F. Locher, Josias Old, Katharina Brechtelsbauer, Jakob Holschbach, Hans Peter Büchler, Sebastian Weber, and Markus Müller An open-source, pulse-optimization framework enables high-fidelity multiqubit gates in neutral-atom platforms for applications in quantum error correction. [PRX Quantum 7, 020354] Published Mon Jun 08, 2026
  • Author(s): Dongjin Lee and Beni Yoshida Access to measurement outcomes can improve decodability under monitored dynamics based on new insights into stability under partial measurement and logical measurement statistics. [PRX Quantum 7, 020352] Published Fri Jun 05, 2026
  • Author(s): Gong Zhang, Ignatius William Primaatmaja, Yue Chen, Si Qi Ng, Hong Jie Ng, Marco Pistoia, Xiao Gong, Koon Tong Goh, Chao Wang, and Charles Lim A fully integrated silicon photonic chipset implements a self-testing quantum random number generator, paving the way for miniaturized, production-scale quantum security devices. [PRX Quantum 7, 020353] Published Fri Jun 05, 2026
  • Author(s): Francesco Cesa, Tommaso Feri, and Angelo Bassi Top-to-bottom single emitter quantum tree-code generation and optimized asymmetric code geometries jointly boost quantum repeater performance and near-term feasibility. [PRX Quantum 7, 020346] Published Thu Jun 04, 2026
  • Author(s): Xiantao Li Mapping ancillary degrees of freedom to a one-dimensional tight-binding lattice overcomes traditional connectivity bottlenecks, enabling the near optimal quantum simulation of nonunitary dynamics. [PRX Quantum 7, 020350] Published Thu Jun 04, 2026