Directly Trapping Atoms in a U-Shaped Magneto-Optical Trap Using a Mini Atom Chip
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Abstract
We experimentally demonstrate the trapping of 85Rb atoms directly on a chip-size U-shaped magneto-optical trap (U-MOT). The trap includes a U-shaped wire on the chip, two bias magnetic field coils and laser beams. The capture volume of the U-MOT is theoretically calculated, and the trap is experimentally realized. With 2A current applied to the U-shaped wire and 2-Gauss horizontal bias field, more than 2×10^6 atoms are trapped. In contrast with an ordinary mirror-MOT, this U-MOT captures atoms directly from the background, thus the trap size is greatly reduced. Based on this mini trap scheme, it is possible to realize a chip-size atom trap array for quantum information processing.
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YAN Hui, YANG Guo-Qing, WANG Jin, ZHAN Ming-Sheng. Directly Trapping Atoms in a U-Shaped Magneto-Optical Trap Using a Mini Atom Chip[J]. Chin. Phys. Lett., 2008, 25(9): 3219-3222.
YAN Hui, YANG Guo-Qing, WANG Jin, ZHAN Ming-Sheng. Directly Trapping Atoms in a U-Shaped Magneto-Optical Trap Using a Mini Atom Chip[J]. Chin. Phys. Lett., 2008, 25(9): 3219-3222.
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YAN Hui, YANG Guo-Qing, WANG Jin, ZHAN Ming-Sheng. Directly Trapping Atoms in a U-Shaped Magneto-Optical Trap Using a Mini Atom Chip[J]. Chin. Phys. Lett., 2008, 25(9): 3219-3222.
YAN Hui, YANG Guo-Qing, WANG Jin, ZHAN Ming-Sheng. Directly Trapping Atoms in a U-Shaped Magneto-Optical Trap Using a Mini Atom Chip[J]. Chin. Phys. Lett., 2008, 25(9): 3219-3222.
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