The nature of strongly interacting Fermi gases and magnetism is one of the most important and studied topics in condensed-matter physics. Still, there are many open questions. A central issue is under what circumstances strong short-range repulsive interactions are enough to drive magnetic correlations. Recent progress in the field of cold atomic gases allows one to address this question in very clean systems where both particle numbers, interactions and dimensionality can be tuned. Here we study fermionic few-body systems in a one dimensional harmonic trap using a new rapidly converging effective-interaction technique, plus a novel analytical approach. This allows us to calculate the properties of a single spin-down atom interacting with a...
We study quasi-one-dimensional few-particle systems consisting of one to six ultracold fermionic ato...
We study quasi-one-dimensional few-particle systems consisting of one to six ultracold fermionic ato...
Ferromagnetism is a pure quantum correlation phenomenon, and yet it is responsible for most magnetic...
The nature of strongly interacting Fermi gases and magnetism is one of the most important and studie...
This thesis reports on experiments with few-fermion systems in quasi one dimensional confining poten...
We study a few Fermi atoms interacting through attractive contact forces in a one-dimensional trap b...
We study a few Fermi atoms interacting through attractive contact forces in a one-dimensional trap b...
This thesis reports on the deterministic preparation of magnetically ordered states in systems of fe...
Strongly interacting one-dimensional quantum systems often behave in a manner that is distinctly dif...
© 2014 Dr. Brendan Craig MulkerinThe experimental realisation of ultracold quantum gases offers a ne...
We report on the deterministic preparation of antiferromagnetic Heisenberg spin chains consisting of...
© 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 study a strongly attractive system of a few spin-(1/2) fermions confined in a one-dimensional har...
Can a gas of spin-up and spin-down fermions become ferromagnetic because of repulsive interactions? ...
We study quasi-one-dimensional few-particle systems consisting of one to six ultracold fermionic ato...
We study quasi-one-dimensional few-particle systems consisting of one to six ultracold fermionic ato...
Ferromagnetism is a pure quantum correlation phenomenon, and yet it is responsible for most magnetic...
The nature of strongly interacting Fermi gases and magnetism is one of the most important and studie...
This thesis reports on experiments with few-fermion systems in quasi one dimensional confining poten...
We study a few Fermi atoms interacting through attractive contact forces in a one-dimensional trap b...
We study a few Fermi atoms interacting through attractive contact forces in a one-dimensional trap b...
This thesis reports on the deterministic preparation of magnetically ordered states in systems of fe...
Strongly interacting one-dimensional quantum systems often behave in a manner that is distinctly dif...
© 2014 Dr. Brendan Craig MulkerinThe experimental realisation of ultracold quantum gases offers a ne...
We report on the deterministic preparation of antiferromagnetic Heisenberg spin chains consisting of...
© 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 study a strongly attractive system of a few spin-(1/2) fermions confined in a one-dimensional har...
Can a gas of spin-up and spin-down fermions become ferromagnetic because of repulsive interactions? ...
We study quasi-one-dimensional few-particle systems consisting of one to six ultracold fermionic ato...
We study quasi-one-dimensional few-particle systems consisting of one to six ultracold fermionic ato...
Ferromagnetism is a pure quantum correlation phenomenon, and yet it is responsible for most magnetic...