Beyond the Spin Model Approximation for Ramsey Spectroscopy
arXiv:1312.0887 · doi:10.1103/PhysRevLett.112.123001
Abstract
Ramsey spectroscopy has become a powerful technique for probing non-equilibrium dynamics of internal (pseudospin) degrees of freedom of interacting systems. In many theoretical treatments, the key to understanding the dynamics has been to assume the external (motional) degrees of freedom are decoupled from the pseudospin degrees of freedom. Determining the validity of this approximation -- known as the spin model approximation -- is complicated, and has not been addressed in detail. Here we shed light in this direction by calculating Ramsey dynamics exactly for two interacting spin-1/2 particles in a harmonic trap. We focus on -wave-interacting fermions in quasi-one and two-dimensional geometries. We find that in 1D the spin model assumption works well over a wide range of experimentally-relevant conditions, but can fail at time scales longer than those set by the mean interaction energy. Surprisingly, in 2D a modified version of the spin model is exact to first order in the interaction strength. This analysis is important for a correct interpretation of Ramsey spectroscopy and has broad applications ranging from precision measurements to quantum information and to fundamental probes of many-body systems.
References in corpus (9)
- Time dependent impurity in ultracold fermions: orthogonality catastrophe and beyond
- Spectroscopic insensitivity to cold collisions in a two-state mixture of fermions
- Interferometric approach to measuring band topology in 2D optical lattices
- Probing Interactions between Ultracold Fermions
- Observation of Anomalous Spin Segregation in a Trapped Fermi Gas
- Decoherence and Collisional Frequency Shifts of Trapped Bosons and Fermions
- Dynamics of ultracold molecules in confined geometry and electric field
- Spin waves and Collisional Frequency Shifts of a Trapped-Atom Clock
- S-Wave Collisional Frequency Shift of a Fermion Clock
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- Realizing Exactly Solvable SU(N) Magnets with Thermal Atoms
- Simulating fermions in spin-dependent potentials with spin models on an energy lattice