This thesis reports on experimental studies of few-body physics in ultracold Fermi gases. The main part is devoted to the first realisation of an ultracold three-component Fermi gas in thermal equilibrium that consists of atoms in the three lowest spin states of 6Li. In first experiments the collisional stability of the gas was investigated in de-pendence of the interparticle interaction. The interaction strength was tuned by an external magnetic field employing Feshbach resonances in all three two-body scat-tering channels. At two magnetic field values a resonant enhancement of three-body loss was observed that can be explained by an Efimov-like trimer consisting of one atom in each of the three states which crosses the continuum twice in ...
Ultracold gases of three distinguishable particles with large scattering lengths are expected to sho...
We study ultracold gases of alkali-metal atoms in the quantum degenerate regime. The interatomic int...
Rapid progress in the field of ultracold atoms allows the study of many new and old models of quantu...
This thesis reports on experimental studies of few-body physics in ultracold Fermi gases. The main p...
This thesis reports on the first production of a degenerate three-component Fermi gas in equilibrium...
This thesis reports on experiments studying the few-body physics of three distinguishable fermionic ...
This thesis reports on the first production of a degenerate three-component Fermi gas in equilibrium...
© 2016 Dr. Christopher John BradlySince their recent experimental realisation, ultracold quantum gas...
Thesis (Ph.D.), Department of Physics and Astronomy, Washington State UniversityMuch progress has be...
We investigate three-body recombination loss across a Feshbach resonance in a gas of ultracold 7Li a...
We report on high-resolution Feshbach spectroscopy on a degenerate, spin-polarized Fermi gas of $^{1...
This thesis presents experiments exploring Feshbach molecules and Efimov trimers in an ultracold Bos...
This thesis reports on the first steps towards an experimental setup capable of realizing an ultraco...
Thesis Supervisor: Wolfgang Ketterle Title: John D. MacArthur Professor of PhysicsIn the past few y...
We show that the recently measured magnetic field dependence of three-body loss in a three-component...
Ultracold gases of three distinguishable particles with large scattering lengths are expected to sho...
We study ultracold gases of alkali-metal atoms in the quantum degenerate regime. The interatomic int...
Rapid progress in the field of ultracold atoms allows the study of many new and old models of quantu...
This thesis reports on experimental studies of few-body physics in ultracold Fermi gases. The main p...
This thesis reports on the first production of a degenerate three-component Fermi gas in equilibrium...
This thesis reports on experiments studying the few-body physics of three distinguishable fermionic ...
This thesis reports on the first production of a degenerate three-component Fermi gas in equilibrium...
© 2016 Dr. Christopher John BradlySince their recent experimental realisation, ultracold quantum gas...
Thesis (Ph.D.), Department of Physics and Astronomy, Washington State UniversityMuch progress has be...
We investigate three-body recombination loss across a Feshbach resonance in a gas of ultracold 7Li a...
We report on high-resolution Feshbach spectroscopy on a degenerate, spin-polarized Fermi gas of $^{1...
This thesis presents experiments exploring Feshbach molecules and Efimov trimers in an ultracold Bos...
This thesis reports on the first steps towards an experimental setup capable of realizing an ultraco...
Thesis Supervisor: Wolfgang Ketterle Title: John D. MacArthur Professor of PhysicsIn the past few y...
We show that the recently measured magnetic field dependence of three-body loss in a three-component...
Ultracold gases of three distinguishable particles with large scattering lengths are expected to sho...
We study ultracold gases of alkali-metal atoms in the quantum degenerate regime. The interatomic int...
Rapid progress in the field of ultracold atoms allows the study of many new and old models of quantu...