The weak coupling many-polaron formalism is applied to ultracold bosonic impurities in a Bose-Einstein condensate. This formalism allows calculating the ground state and response properties. We apply this to calculate both the inertial and spectral effective masses of the impurities and the response of the system to Bragg scattering
Mobile impurity atoms immersed in Bose–Einstein condensates provide a new platform for exploring Bos...
We use variational methods to study a spin impurity in a one-dimensional Bose lattice gas. Both in t...
We investigate the static properties of one and two ionic impurities immersed in a bosonic atomic ba...
When a mobile impurity interacts with a many-body system, such as a phonon bath, a polaron is formed...
We investigate the effects of a nearly uniform Bose-Einstein condensate (BEC) on the properties of i...
By means of quantum Monte Carlo methods we calculate the binding energy of an impurity immersed in a...
We discuss the interaction of a quantum impurity with a one-dimensional degenerate Bose gas forming ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
In this thesis we investigate the properties of impurities immersed in a dilute Bose gas at zero tem...
An impurity in a Bose gas is commonly referred to as Bose polaron. For a dilute Bose gas its propert...
A mobile impurity coupled to a weakly interacting Bose gas, a Bose polaron, displays several interes...
We consider the ground-state properties of an impurity particle ("polaron") resonantly interacting w...
Summarization: A toolbox for the quantum simulation of polarons in ultracold atoms is presented. Mot...
Recent experimental advances enabled the realization of mobile impurities immersed in a Bose-Einstei...
We studied the properties of a single impurity atom immersed in a dilute Bose condensate at low temp...
Mobile impurity atoms immersed in Bose–Einstein condensates provide a new platform for exploring Bos...
We use variational methods to study a spin impurity in a one-dimensional Bose lattice gas. Both in t...
We investigate the static properties of one and two ionic impurities immersed in a bosonic atomic ba...
When a mobile impurity interacts with a many-body system, such as a phonon bath, a polaron is formed...
We investigate the effects of a nearly uniform Bose-Einstein condensate (BEC) on the properties of i...
By means of quantum Monte Carlo methods we calculate the binding energy of an impurity immersed in a...
We discuss the interaction of a quantum impurity with a one-dimensional degenerate Bose gas forming ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
In this thesis we investigate the properties of impurities immersed in a dilute Bose gas at zero tem...
An impurity in a Bose gas is commonly referred to as Bose polaron. For a dilute Bose gas its propert...
A mobile impurity coupled to a weakly interacting Bose gas, a Bose polaron, displays several interes...
We consider the ground-state properties of an impurity particle ("polaron") resonantly interacting w...
Summarization: A toolbox for the quantum simulation of polarons in ultracold atoms is presented. Mot...
Recent experimental advances enabled the realization of mobile impurities immersed in a Bose-Einstei...
We studied the properties of a single impurity atom immersed in a dilute Bose condensate at low temp...
Mobile impurity atoms immersed in Bose–Einstein condensates provide a new platform for exploring Bos...
We use variational methods to study a spin impurity in a one-dimensional Bose lattice gas. Both in t...
We investigate the static properties of one and two ionic impurities immersed in a bosonic atomic ba...