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Condensed-matter physics

Really cool molecules

Ultracold molecules have been made by applying a changing magnetic field to a quantum gas of 'fermionic' atoms. This raises the prospect of creating novel superfluids and molecular Bose–Einstein condensates.

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Figure 1: Making cold molecules.

References

  1. Nature Insight on Ultracold Matter Nature 416, 205–246 (2002).

  2. Houbiers, M. & Stoof, H. T. C. Phys. Rev. A 59, 1556–1561 (1999).

    Article  ADS  CAS  Google Scholar 

  3. Bruun, G., Castin, Y., Dum, R. & Burnett, K. Eur. Phys. D 7, 433–439 (1999).

    Article  ADS  CAS  Google Scholar 

  4. Holland, M., Kokkelmans, S. J. J. M. F., Chiofalo, M. L. & Walser, R. Phys. Rev. Lett. 87, 120406 (2001).

    Article  ADS  CAS  Google Scholar 

  5. Regal, C. A., Ticknor, C., Bohn, J. L. & Jin, D. S. Nature 424, 47–50 (2003).

    Article  ADS  CAS  Google Scholar 

  6. Julienne, P. S., Burnett, K., Band, Y. B. & Stwalley, W. C. Phys. Rev. A 58, R797–R800 (1998).

    Article  ADS  CAS  Google Scholar 

  7. Timmermans, E., Tommasini, P., Côté, R., Hussein, M. & Kerman, A. Phys. Rev. Lett. 83, 2691–2694 (1999).

    Article  ADS  CAS  Google Scholar 

  8. Heinzen, D. J., Wynar, R., Drummond, P. D. & Kheruntsyan, K. V. Phys. Rev. Lett. 84, 5029–5032 (2000).

    Article  ADS  CAS  Google Scholar 

  9. Mies, F. H., Tiesinga, E. & Julienne, P. S. Phys. Rev. A 61, 022721 (2000).

    Article  ADS  Google Scholar 

  10. Kokkelmans, S. J. J. M. F., Vissers, H. M. J. & Verhaar, B. J. Phys. Rev. A 63, 031601 (2001).

    Article  ADS  Google Scholar 

  11. Wynar, R. H., Freeland, R. S., Han, D. J., Ryu, C. & Heinzen, D. J. Science 287, 1016–1019 (2000).

    Article  ADS  CAS  Google Scholar 

  12. Donley, E. A., Claussen, N. R., Thompson, S. T. & Wieman, C. E. Nature 417, 529–533 (2002).

    Article  ADS  CAS  Google Scholar 

  13. Kokkelmans, S. J. J. M. F. & Holland, M. J. Phys. Rev. Lett. 89, 180401 (2002).

    Article  ADS  CAS  Google Scholar 

  14. Köhler, T., Gasenzer, T. & Burnett, K. Phys. Rev. A 67, 013601 (2003).

    Article  ADS  Google Scholar 

  15. Hudson, J. J., Sauer, B. E., Tarbutt, M. R. & Hinds, E. A. Phys. Rev. Lett. 89, 023003 (2002).

    Article  ADS  CAS  Google Scholar 

  16. DeMille, D. Phys. Rev. Lett. 88, 067901 (2002).

    Article  ADS  CAS  Google Scholar 

Download references

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Correspondence to Paul S. Julienne.

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Julienne, P. Really cool molecules. Nature 424, 24–25 (2003). https://doi.org/10.1038/424024a

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