Cooling a Single Atom in an Optical Tweezer to Its Quantum Ground State
Top Cited Papers
Open Access
- 29 November 2012
- journal article
- Published by American Physical Society (APS) in Physical Review X
Abstract
We report cooling of a single neutral atom to its three-dimensional vibrational ground state in an optical tweezer. After employing Raman sideband cooling for tens of milliseconds, we measure via sideband spectroscopy a three-dimensional ground-state occupation of ~90%. We further observe coherent control of the spin and motional state of the trapped atom. Our demonstration shows that an optical tweezer, formed simply by a tightly focused beam of light, creates sufficient confinement for efficient sideband cooling. This source of ground-state neutral atoms will be instrumental in numerous quantum simulation and logic applications that require a versatile platform for storing and manipulating ultracold single neutral atoms. For example, these results will improve current optical tweezer experiments studying atom-photon coupling and Rydberg quantum logic gates, and could provide new opportunities such as rapid production of single dipolar molecules or quantum simulation in tweezer arrays.Comment: Updated intro, titlKeywords
All Related Versions
Funding Information
- National Science Foundation
This publication has 31 references indexed in Scilit:
- Single-spin addressing in an atomic Mott insulatorNature, 2011
- Deterministic entanglement of two neutral atoms via Rydberg blockadePhysical Review A, 2010
- Near-deterministic preparation of a single atom in an optical microtrapNature Physics, 2010
- Entanglement of Two Individual Neutral Atoms Using Rydberg BlockadePhysical Review Letters, 2010
- A quantum gas microscope for detecting single atoms in a Hubbard-regime optical latticeNature, 2009
- Two-dimensional transport and transfer of a single atomic qubit in optical tweezersNature Physics, 2007
- Another way to approach zero entropy for a finite system of atomsPhysical Review A, 2004
- Sub-poissonian loading of single atoms in a microscopic dipole trapNature, 2001
- Sideband cooling of neutral atoms in a far-detuned optical latticeEurophysics Letters, 1998
- Resolved-Sideband Raman Cooling to the Ground State of an Optical LatticePhysical Review Letters, 1998