\u3cp\u3eWe perform numerical simulations of trapped \u3csup\u3e171\u3c/sup\u3eYb\u3csup\u3e+\u3c/sup\u3e ions that are buffer gas cooled by a cold cloud of \u3csup\u3e6\u3c/sup\u3eLi atoms. This species combination has been suggested to be the most promising for reaching the quantum regime of interacting atoms and ions in a Paul trap. Treating the atoms and ions classically, we compute that the collision energy indeed reaches below the quantum limit for a perfect linear Paul trap. We analyze the effect of imperfections in the ion trap that cause excess micromotion. We find that the suppression of excess micromotion required to reach the quantum limit should be within experimental reach. Indeed, although the requirements are strong, they ar...
Sympathetic cooling of a Fermi gas with a buffer gas of bosonic atoms is an efficient way to achieve...
We report on the observation of cold collisions between 6Li atoms and Yb+ ions. This combination of ...
Linear Paul traps use radio frequency fields to confine ions for long times in deep potentials. The ...
We perform numerical simulations of trapped 171Yb+ ions that are buffer gas cooled by a cold cloud o...
We perform numerical simulations of trapped 171Yb+ ions that are buffer gas cooled by a cold cloud o...
Great advances in precision measurements in the quantum regime have been achieved with trapped ions ...
In this PhD thesis, we describe the design and construction of an experimental apparatus capable of ...
Reaching ultracold temperatures within hybrid atom-ion systems is a major limiting factor for contro...
In recent years, improved control of the motional and internal quantum states of ultracold neutral a...
In this thesis we describe an experimental setup designed for preparing an ultracold sample of 6Li a...
\u3cp\u3eWe theoretically study trapped ions that are immersed in an ultracold gas of Rydberg-dresse...
During the last few decades, the two fields of ultracold neutral atoms and of single trapped ions ha...
This Dissertation details the development of state-of-the-art hybrid atom-ion trapping architecture ...
We study cold collisions between trapped ions and trapped atoms in the semiclassical (Langevin) regi...
This dissertation focuses on observing and controlling cold atom-ion collisions. Such collisions hav...
Sympathetic cooling of a Fermi gas with a buffer gas of bosonic atoms is an efficient way to achieve...
We report on the observation of cold collisions between 6Li atoms and Yb+ ions. This combination of ...
Linear Paul traps use radio frequency fields to confine ions for long times in deep potentials. The ...
We perform numerical simulations of trapped 171Yb+ ions that are buffer gas cooled by a cold cloud o...
We perform numerical simulations of trapped 171Yb+ ions that are buffer gas cooled by a cold cloud o...
Great advances in precision measurements in the quantum regime have been achieved with trapped ions ...
In this PhD thesis, we describe the design and construction of an experimental apparatus capable of ...
Reaching ultracold temperatures within hybrid atom-ion systems is a major limiting factor for contro...
In recent years, improved control of the motional and internal quantum states of ultracold neutral a...
In this thesis we describe an experimental setup designed for preparing an ultracold sample of 6Li a...
\u3cp\u3eWe theoretically study trapped ions that are immersed in an ultracold gas of Rydberg-dresse...
During the last few decades, the two fields of ultracold neutral atoms and of single trapped ions ha...
This Dissertation details the development of state-of-the-art hybrid atom-ion trapping architecture ...
We study cold collisions between trapped ions and trapped atoms in the semiclassical (Langevin) regi...
This dissertation focuses on observing and controlling cold atom-ion collisions. Such collisions hav...
Sympathetic cooling of a Fermi gas with a buffer gas of bosonic atoms is an efficient way to achieve...
We report on the observation of cold collisions between 6Li atoms and Yb+ ions. This combination of ...
Linear Paul traps use radio frequency fields to confine ions for long times in deep potentials. The ...