Trapping of lithium atoms in a large hollow optical dipole trap
V. A. Vinogradov, K.A. Karpov, S.S. Lukashov, A. Turlapov
Abstract
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V. A. Vinogradov, K.A. Karpov, S.S. Lukashov, A. Turlapov
Abstract
Open-access reader
Abstract We describe the trapping of lithium atoms in an optical dipole trap about 1 mm in size, with a nearly rectangular potential. The trap has the shape of a cylinder with flat bases. The confinement region is bounded by thin walls produced by light with a frequency blue-detuned from an atomic transition (resonance) frequency by 19 GHz. Before trapping, the gas is collected and cooled in a magneto-optical trap whose centre nearly coincides with the centre of the dipole trap. After switching off the magneto-optical trap, we have photographed the atoms remaining in the dipole trap.
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Abstract We describe the trapping of lithium atoms in an optical dipole trap about 1 mm in size, with a nearly rectangular potential. The trap has the shape of a cylinder with flat bases. The confinement region is bounded by thin walls produced by light with a frequency blue-detuned from an atomic transition (resonance) frequency by 19 GHz. Before trapping, the gas is collected and cooled in a magneto-optical trap whose centre nearly coincides with the centre of the dipole trap. After switching off the magneto-optical trap, we have photographed the atoms remaining in the dipole trap.
Key concepts: Trapping, Trap (plumbing), Dipole, Atomic physics, Lithium (medication), Resonance (particle physics), Magneto-optical trap, Physics