This thesis describes experimental work done with two of the smallest diatomic alkali molecules, 6Li2 and 23Na6Li, each formed out of its constituent atoms at ultracold temperatures. The 23Na6Li molecule was formed for the first time at ultracold temperatures, after previous attempts failed due to an incorrect assignment of Feshbach resonances in the 6Li+23Na system. The experiment represents successful molecule formation around the most difficult Feshbach resonance ever used, and opens up the possibility of transferring NaLi to its spin-triplet ground state, which has both magnetic and electric dipole moments and is expected to be long-lived. For 6Li2, the experimental efforts in this thesis have solved a long-standing puzzle of apparently...
Alkali hydride molecules are polar, exhibiting large ground-state dipole moments. As ultracold sourc...
Heteronuclear polar molecules have recently attracted enormous attention owing to their ground state...
Heteronuclear polar molecules have recently attracted enormous attention owing to their ground state...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.Cataloged from PDF ve...
Author Institution: Atomic Physics Division and Joint Quantum Institute, NIST, Gaithersburg, MD 2089...
International audienceWe investigate ultracold collisions in a novel mixture of Li6 and Cr53 fermion...
Thesis (Ph.D.)--University of Washington, 2015I detail the execution and results of experiments in a...
A first principles study of the dynamics of Li6(2S)+Li6Yb174(2Σ+)→6Li2(1Σ+) + Yb174(1S) reaction is ...
This thesis reports on the construction of a novel experimental apparatus to create an ultracold sam...
International audienceWe investigate ultracold collisions in a novel mixture of Li6 and Cr53 fermion...
A cold atomic gas formed by two different species represents an intriguing system for a deeper under...
Heteronuclear polar molecules have recently attracted enormous attention owing to their ground state...
$^{1}$ F.Stienkemeier, J. Higgins, W.E. Ernst, and G. Scoles, Phys. Rev. Lett. 74, 3592 (1995). $^{2...
Alkali hydride molecules are polar, exhibiting large ground-state dipole moments. As ultracold sourc...
Alkali hydride molecules are polar, exhibiting large ground-state dipole moments. As ultracold sourc...
Heteronuclear polar molecules have recently attracted enormous attention owing to their ground state...
Heteronuclear polar molecules have recently attracted enormous attention owing to their ground state...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.Cataloged from PDF ve...
Author Institution: Atomic Physics Division and Joint Quantum Institute, NIST, Gaithersburg, MD 2089...
International audienceWe investigate ultracold collisions in a novel mixture of Li6 and Cr53 fermion...
Thesis (Ph.D.)--University of Washington, 2015I detail the execution and results of experiments in a...
A first principles study of the dynamics of Li6(2S)+Li6Yb174(2Σ+)→6Li2(1Σ+) + Yb174(1S) reaction is ...
This thesis reports on the construction of a novel experimental apparatus to create an ultracold sam...
International audienceWe investigate ultracold collisions in a novel mixture of Li6 and Cr53 fermion...
A cold atomic gas formed by two different species represents an intriguing system for a deeper under...
Heteronuclear polar molecules have recently attracted enormous attention owing to their ground state...
$^{1}$ F.Stienkemeier, J. Higgins, W.E. Ernst, and G. Scoles, Phys. Rev. Lett. 74, 3592 (1995). $^{2...
Alkali hydride molecules are polar, exhibiting large ground-state dipole moments. As ultracold sourc...
Alkali hydride molecules are polar, exhibiting large ground-state dipole moments. As ultracold sourc...
Heteronuclear polar molecules have recently attracted enormous attention owing to their ground state...
Heteronuclear polar molecules have recently attracted enormous attention owing to their ground state...