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Single-Photon Atomic Cooling - Raizen Lab - The University of ...

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the potential landscape due to the combined magnetic field, optical dipole<br />

trap, and gravity for atoms in the |F = 2,mF = 2〉 and |F = 1,mF = 0〉<br />

states, as well as the desired position <strong>of</strong> the state transfer.<br />

<br />

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<br />

<br />

<br />

<br />

<br />

<br />

F = 2, m F = 2<br />

F = 1, m F = 0<br />

<br />

<br />

Figure 4.11: <strong>The</strong> potential landscape due to the combined magnetic field,<br />

optical dipole trap, and gravity for atoms in the |F = 2,mF = 2〉 and |F =<br />

1,mF = 0〉 states. Atoms are transfered from the |F = 2,mF = 2〉 state into<br />

the |F = 1,mF = 0〉 state by the depopulation beam at the position indicted<br />

by the dashed vertical line.<br />

As atoms accumulate in the optical box, the outermost trajectories <strong>of</strong><br />

the magnetic trap are depleted by the depopulation beam. For maximum load-<br />

ing into the optical box, we adiabatically translate the center <strong>of</strong> the magnetic<br />

trap towards the optical box by applying a linear current ramp to an auxiliary<br />

magnetic coil located above the atoms.<br />

149

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