most citedThe Moving Born-Oppenheimer Approximation

2 citations · 2 across the 5 of their papers we have counts for

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quant-ph2026

Realization of a Quantum Topological Photon Pump

Qianao Yue, Bernardo Barrera, Martin Ritter +4

Topological pumps transfer charge or energy at quantized rates determined solely by band topology, independent of the details of the control fields. Photon pumps operating on this…

quant-ph2026

Dissipative Stabilization of Floquet-Engineered Many-Body Order

Shreyas Raman, Robin Schäfer, Robin Schafer +3

Floquet driving underlies Hamiltonian and gate engineering, and produces dynamical orders with no equilibrium counterpart. These phenomena are, however, transient in well-isolated…

quant-ph20262 cited

The Moving Born-Oppenheimer Approximation

Bernardo Barrera, Daniel P. Arovas, Anushya Chandran +1

We develop a mixed quantum-classical framework, dubbed the Moving Born-Oppenheimer Approximation (MBOA), to describe the dynamics of slow degrees of freedom (DOFs) coupled to fast…

quant-ph2025

Predicting Dynamics from Flows of the Eigenstate Thermalization Hypothesis

Dominik Hahn, David M. Long, Marin Bukov +1

Analytical treatments of far-from-equilibrium quantum dynamics are few, even in well-thermalizing systems. The celebrated eigenstate thermalization hypothesis (ETH) provides a post…

quant-ph2025

Autonomous Stabilization of Floquet States Using Static Dissipation

Martin Ritter, David M. Long, Qianao Yue +2

Floquet engineering, in which the properties of a quantum system are modified through the application of strong periodic drives, is an indispensable tool in atomic and condensed ma…

quant-ph2025

Probing Hilbert space fragmentation using controlled dephasing

Dominik Vuina, Robin Schäfer, David M. Long +1

Dynamical constraints in many-body quantum systems can lead to Hilbert space fragmentation, wherein the system's evolution is restricted to small subspaces of Hilbert space called…