Optical Dipole Trap at Craig Pincus blog

Optical Dipole Trap. single atoms and molecules can be trapped in tightly focused beams of light that form ‘optical tweezers’, affording. in this work, we demonstrate precise in situ imaging of optical dipole traps by probing a hyperfine transition with. we present an evaporative cooling technique for atoms trapped in an optical dipole trap that benefits from. Rudolf grimm, matthias weidemüller, yurii b. optical dipole traps for neutral atoms. tightly focused optical dipole traps induce vector light shifts (“fictitious magnetic fields”) which complicate their. in the experiments discussed, optical dipole traps have already shown great promise for a variety of different. trapping single ions in optical fields without rf confinement has been achieved both in optical dipole traps 2, 3.

Experimental setup. A single atom is trapped in an optical dipole trap
from www.researchgate.net

we present an evaporative cooling technique for atoms trapped in an optical dipole trap that benefits from. Rudolf grimm, matthias weidemüller, yurii b. in the experiments discussed, optical dipole traps have already shown great promise for a variety of different. in this work, we demonstrate precise in situ imaging of optical dipole traps by probing a hyperfine transition with. tightly focused optical dipole traps induce vector light shifts (“fictitious magnetic fields”) which complicate their. single atoms and molecules can be trapped in tightly focused beams of light that form ‘optical tweezers’, affording. optical dipole traps for neutral atoms. trapping single ions in optical fields without rf confinement has been achieved both in optical dipole traps 2, 3.

Experimental setup. A single atom is trapped in an optical dipole trap

Optical Dipole Trap single atoms and molecules can be trapped in tightly focused beams of light that form ‘optical tweezers’, affording. in this work, we demonstrate precise in situ imaging of optical dipole traps by probing a hyperfine transition with. optical dipole traps for neutral atoms. single atoms and molecules can be trapped in tightly focused beams of light that form ‘optical tweezers’, affording. we present an evaporative cooling technique for atoms trapped in an optical dipole trap that benefits from. Rudolf grimm, matthias weidemüller, yurii b. in the experiments discussed, optical dipole traps have already shown great promise for a variety of different. trapping single ions in optical fields without rf confinement has been achieved both in optical dipole traps 2, 3. tightly focused optical dipole traps induce vector light shifts (“fictitious magnetic fields”) which complicate their.

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