5 papers · 1 filter
Dissipative Preparation of Correlated Quantum States in Dipolar Rydberg Arrays
Mingsheng Tian, Zhen Bi, Thomas Iadecola +1
Preparing correlated quantum states is essential for emerging technologies, but remains challenging in many-body systems. Here we propose a dissipative protocol that engineers nonr…
Generalized pulse design in Floquet engineering: Application to interacting spin systems
Ryan Scott, Bryce Gadway, V. W. Scarola
Floquet engineering in quantum simulation employs externally applied high-frequency pulses to dynamically design steady-state effective Hamiltonians. Such protocols can be used to…
Collective dissipation engineering of interacting Rydberg atoms
Tao Chen, Chenxi Huang, Jacob P. Covey +1
Engineered dissipation is emerging as an alternative tool for quantum state control, enabling high-fidelity preparation, transfer and stabilization, and access to novel phase trans…
Quantum walks and correlated dynamics in an interacting synthetic Rydberg lattice
Tao Chen, Chenxi Huang, Bryce Gadway +1
Coherent dynamics of interacting quantum particles plays a central role in the study of strongly correlated quantum matter and the pursuit of quantum information processors. Here,…
Rotational magic conditions for ultracold molecules in the presence of Raman and Rayleigh scattering
Svetlana Kotochigova, Qingze Guan, Eite Tiesinga +3
Molecules have vibrational, rotational, spin-orbit and hyperfine degrees of freedom or quantum states, each of which responds in a unique fashion to external electromagnetic radiat…