5 papers
Exploring confinement transitions in lattice gauge theories with dipolar atoms beyond one dimension
Matjaž KebriÄ, Lin Su, Alexander Douglas +6
Confinement of particles into bound states is a phenomenon spanning from high-energy to condensed matter physics, which can be studied in the framework of lattice gauge theories (L…
Squeezing Towards the Heisenberg Limit with Locally Interacting Spins
Nazli Ugur Koyluoglu, Shankari V. Rajagopal, Gabriel L. Moreau +3
We propose a robust approach to spin squeezing with local interactions that approaches the Heisenberg limit of phase sensitivity. To generate the requisite entanglement, we general…
Experimental Demonstration of Logical Magic State Distillation
Pedro Sales Rodriguez, John M. Robinson, Paul Niklas Jepsen +70
Realizing universal fault-tolerant quantum computation is a key goal in quantum information science. By encoding quantum information into logical qubits utilizing quantum error cor…
Spin Squeezing with Magnetic Dipoles
Alexander Douglas, Vassilios Kaxiras, Lin Su +4
Entanglement can improve the measurement precision of quantum sensors beyond the shot noise limit. Neutral atoms, the basis of some of the most precise and accurate optical clocks…
Large-scale quantum reservoir learning with an analog quantum computer
Milan KornjaÄa, Hong-Ye Hu, Chen Zhao +50
Quantum machine learning has gained considerable attention as quantum technology advances, presenting a promising approach for efficiently learning complex data patterns. Despite t…