Ultracold Gas of Bosonic Na 23 K 39 Ground-State Molecules

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • Kai K. Voges
  • Philipp Gersema
  • Mara Meyer Zum Alten Borgloh
  • Torben A. Schulze
  • Torsten Hartmann
  • Alessandro Zenesini
  • Silke Ospelkaus
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Aufsatznummer083401
FachzeitschriftPhysical review letters
Jahrgang125
Ausgabenummer8
PublikationsstatusVeröffentlicht - 21 Aug. 2020

Abstract

We report the creation of ultracold bosonic dipolar Na23K39 molecules in their absolute rovibrational ground state. Starting from weakly bound molecules immersed in an ultracold atomic mixture, we coherently transfer the dimers to the rovibrational ground state using an adiabatic Raman passage. We analyze the two-body decay in a pure molecular sample and in molecule-atom mixtures and find an unexpectedly low two-body decay coefficient for collisions between molecules and K39 atoms in a selected hyperfine state. The preparation of bosonic Na23K39 molecules opens the way for future comparisons between fermionic and bosonic ultracold ground-state molecules of the same chemical species.

ASJC Scopus Sachgebiete

Zitieren

Ultracold Gas of Bosonic Na 23 K 39 Ground-State Molecules. / Voges, Kai K.; Gersema, Philipp; Meyer Zum Alten Borgloh, Mara et al.
in: Physical review letters, Jahrgang 125, Nr. 8, 083401, 21.08.2020.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Voges, KK, Gersema, P, Meyer Zum Alten Borgloh, M, Schulze, TA, Hartmann, T, Zenesini, A & Ospelkaus, S 2020, 'Ultracold Gas of Bosonic Na 23 K 39 Ground-State Molecules', Physical review letters, Jg. 125, Nr. 8, 083401. https://doi.org/10.1103/physrevlett.125.083401
Voges, K. K., Gersema, P., Meyer Zum Alten Borgloh, M., Schulze, T. A., Hartmann, T., Zenesini, A., & Ospelkaus, S. (2020). Ultracold Gas of Bosonic Na 23 K 39 Ground-State Molecules. Physical review letters, 125(8), Artikel 083401. https://doi.org/10.1103/physrevlett.125.083401
Voges KK, Gersema P, Meyer Zum Alten Borgloh M, Schulze TA, Hartmann T, Zenesini A et al. Ultracold Gas of Bosonic Na 23 K 39 Ground-State Molecules. Physical review letters. 2020 Aug 21;125(8):083401. doi: 10.1103/physrevlett.125.083401
Voges, Kai K. ; Gersema, Philipp ; Meyer Zum Alten Borgloh, Mara et al. / Ultracold Gas of Bosonic Na 23 K 39 Ground-State Molecules. in: Physical review letters. 2020 ; Jahrgang 125, Nr. 8.
Download
@article{9bfb36e250df487da8e0eb64ca5e09a0,
title = "Ultracold Gas of Bosonic Na 23 K 39 Ground-State Molecules",
abstract = "We report the creation of ultracold bosonic dipolar Na23K39 molecules in their absolute rovibrational ground state. Starting from weakly bound molecules immersed in an ultracold atomic mixture, we coherently transfer the dimers to the rovibrational ground state using an adiabatic Raman passage. We analyze the two-body decay in a pure molecular sample and in molecule-atom mixtures and find an unexpectedly low two-body decay coefficient for collisions between molecules and K39 atoms in a selected hyperfine state. The preparation of bosonic Na23K39 molecules opens the way for future comparisons between fermionic and bosonic ultracold ground-state molecules of the same chemical species.",
author = "Voges, {Kai K.} and Philipp Gersema and {Meyer Zum Alten Borgloh}, Mara and Schulze, {Torben A.} and Torsten Hartmann and Alessandro Zenesini and Silke Ospelkaus",
note = "Funding Information: We thank M. Siercke for enlightening comments and discussions and the group of P. O. Schmidt, PTB Brunswick, for providing scientific material for the Raman laser system. We gratefully acknowledge financial support from the European Research Council through ERC Starting Grant POLAR and from the Deutsche Forschungsgemeinschaft (DFG) through CRC 1227 (DQ-mat), project A03, and FOR 2247, project E5. P. G. thanks the DFG for financial support through RTG 1991. ",
year = "2020",
month = aug,
day = "21",
doi = "10.1103/physrevlett.125.083401",
language = "English",
volume = "125",
journal = "Physical review letters",
issn = "0031-9007",
publisher = "American Physical Society",
number = "8",

}

Download

TY - JOUR

T1 - Ultracold Gas of Bosonic Na 23 K 39 Ground-State Molecules

AU - Voges, Kai K.

AU - Gersema, Philipp

AU - Meyer Zum Alten Borgloh, Mara

AU - Schulze, Torben A.

AU - Hartmann, Torsten

AU - Zenesini, Alessandro

AU - Ospelkaus, Silke

N1 - Funding Information: We thank M. Siercke for enlightening comments and discussions and the group of P. O. Schmidt, PTB Brunswick, for providing scientific material for the Raman laser system. We gratefully acknowledge financial support from the European Research Council through ERC Starting Grant POLAR and from the Deutsche Forschungsgemeinschaft (DFG) through CRC 1227 (DQ-mat), project A03, and FOR 2247, project E5. P. G. thanks the DFG for financial support through RTG 1991.

PY - 2020/8/21

Y1 - 2020/8/21

N2 - We report the creation of ultracold bosonic dipolar Na23K39 molecules in their absolute rovibrational ground state. Starting from weakly bound molecules immersed in an ultracold atomic mixture, we coherently transfer the dimers to the rovibrational ground state using an adiabatic Raman passage. We analyze the two-body decay in a pure molecular sample and in molecule-atom mixtures and find an unexpectedly low two-body decay coefficient for collisions between molecules and K39 atoms in a selected hyperfine state. The preparation of bosonic Na23K39 molecules opens the way for future comparisons between fermionic and bosonic ultracold ground-state molecules of the same chemical species.

AB - We report the creation of ultracold bosonic dipolar Na23K39 molecules in their absolute rovibrational ground state. Starting from weakly bound molecules immersed in an ultracold atomic mixture, we coherently transfer the dimers to the rovibrational ground state using an adiabatic Raman passage. We analyze the two-body decay in a pure molecular sample and in molecule-atom mixtures and find an unexpectedly low two-body decay coefficient for collisions between molecules and K39 atoms in a selected hyperfine state. The preparation of bosonic Na23K39 molecules opens the way for future comparisons between fermionic and bosonic ultracold ground-state molecules of the same chemical species.

UR - http://www.scopus.com/inward/record.url?scp=85090818623&partnerID=8YFLogxK

U2 - 10.1103/physrevlett.125.083401

DO - 10.1103/physrevlett.125.083401

M3 - Article

C2 - 32909799

AN - SCOPUS:85090818623

VL - 125

JO - Physical review letters

JF - Physical review letters

SN - 0031-9007

IS - 8

M1 - 083401

ER -