Abstract
We analyze the optomechanics of an atomic Bose-Einstein condensate interacting with the optical lattice inside a laser-pumped optical cavity and subject to a uniform bias force such as gravity. An atomic wave packet in a tilted lattice undergoes Bloch oscillations; in a cavity the backaction of the atoms on the light leads to a time-dependent modulation of the intracavity lattice at the Bloch frequency. When the Bloch frequency is on the order of the cavity damping rate we find transport of the atoms either up or down the lattice. The transport dynamics can be interpreted as a manifestation of dynamical backaction-induced sideband damping/amplification of the optomechanical Bloch oscillator. Depending on the sign of the pump-cavity detuning, atoms are transported either with or against the bias force accompanied by an up- or down-conversion of the frequency of the pump laser light. We also evaluate the prospects for using the optomechanical Bloch oscillator to make continuous measurements of forces by reading out the Bloch frequency. In this context we establish the significant result that the optical spring effect is absent and the Bloch frequency is not modified by the backaction.
| Original language | English |
|---|---|
| Journal | Atoms |
| Volume | 4 |
| Issue number | 1 |
| DOIs | |
| Publication status | Published - 25 Dec 2015 |
Bibliographical note
22 pages, 5 figures, submitted to AtomsKeywords
- quant-ph
- cond-mat.quant-gas
- physics.atom-ph
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Dive into the research topics of 'An optomechanical elevator: Transport of a Bloch oscillating Bose-Einstein condensate up and down an optical lattice by cavity sideband amplification and cooling'. Together they form a unique fingerprint.Research output
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Backaction driven transport of Bloch oscillating atoms in ring cavities
Goldwin, J., Prasanna Venkatesh, B. & H. J. O'Dell, D., 13 Aug 2014, In: Physical Review Letters. 113, 7, 5 p., 073003.Research output: Contribution to journal › Article › peer-review
9 Citations (Scopus)
Projects
- 1 Finished
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Collective Strong Coupling of Light and Matter with Cold Atoms in a Ring Resonator
Goldwin, J. (Principal Investigator)
Engineering & Physical Science Research Council
30/05/12 → 29/05/14
Project: Research
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