dorsal/arxiv
View SchemaNarrow Line Photoassociation in an Optical Lattice
| Authors | T. Zelevinsky, M. M. Boyd, A. D. Ludlow, T. Ido, J. Ye, R. Ciurylo, P. Naidon, P. S. Julienne |
|---|---|
| Categories | |
| ArXiv ID | physics/0602135 |
| URL | https://arxiv.org/abs/physics/0602135 |
| DOI | 10.1103/PhysRevLett.96.203201 |
| Journal | Phys. Rev. Lett. 96, 203201 (2006) |
Abstract
With ultracold $^{88}$Sr in a 1D magic wavelength optical lattice, we performed narrow line photoassociation spectroscopy near the $^1$S$_0 - ^3$P$_1$ intercombination transition. Nine least-bound vibrational molecular levels associated with the long-range $0_u$ and $1_u$ potential energy surfaces were measured and identified. A simple theoretical model accurately describes the level positions and treats the effects of the lattice confinement on the line shapes. The measured resonance strengths show that optical tuning of the ground state scattering length should be possible without significant atom loss.
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"abstract": "With ultracold $^{88}$Sr in a 1D magic wavelength optical lattice, we\nperformed narrow line photoassociation spectroscopy near the $^1$S$_0 -\n^3$P$_1$ intercombination transition. Nine least-bound vibrational molecular\nlevels associated with the long-range $0_u$ and $1_u$ potential energy surfaces\nwere measured and identified. A simple theoretical model accurately describes\nthe level positions and treats the effects of the lattice confinement on the\nline shapes. The measured resonance strengths show that optical tuning of the\nground state scattering length should be possible without significant atom\nloss.",
"arxiv_id": "physics/0602135",
"authors": [
"T. Zelevinsky",
"M. M. Boyd",
"A. D. Ludlow",
"T. Ido",
"J. Ye",
"R. Ciurylo",
"P. Naidon",
"P. S. Julienne"
],
"categories": [
"physics.atom-ph",
"physics.optics"
],
"doi": "10.1103/PhysRevLett.96.203201",
"journal_ref": "Phys. Rev. Lett. 96, 203201 (2006)",
"title": "Narrow Line Photoassociation in an Optical Lattice",
"url": "https://arxiv.org/abs/physics/0602135"
},
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