Reaching ultracold temperatures within hybrid atom-ion systems is a major limiting factor for control and exploration of the atom-ion interaction in the quantum regime. In this work, we present results on numerical simulations of trapped ion buffer gas cooling using an ultracold atomic gas in a large number of experimentally realistic scenarios. We explore the suppression of micromotion-induced heating effects through optimization of trap parameters for various radio-frequency (rf) traps and rf driving schemes including linear and octupole traps, digital Paul traps, rotating traps and hybrid optical/rf traps. We find that very similar ion energies can be reached in all of them even when considering experimental imperfections that cause so-c...
Sympathetic laser cooling of ions stored within a linear-geometry, radio frequency, electric-quadrup...
Quantum computing requires ultracold ions in a ground vibrational state, which is achieved by sideba...
In recent years, improved control of the motional and internal quantum states of ultracold neutral a...
Reaching ultracold temperatures within hybrid atom-ion systems is a major limiting factor for contro...
The immersion of a single ion confined by a radiofrequency (RF) trap in an ultracold atomic gas exte...
We present, and derive analytic expressions for, a fundamental limit to the sympathetic cooling of i...
We theoretically study trapped ions that are immersed in an ultracold gas of Rydberg-dressed atoms. ...
Great advances in precision measurements in the quantum regime have been achieved with trapped ions ...
Sympathetic cooling of a Fermi gas with a buffer gas of bosonic atoms is an efficient way to achieve...
This dissertation details of the construction of and experiments performed in a hybrid system consis...
Ultracold cold molecular ions promise new directions in various studies of fundamental physics, such...
Hybrid systems of laser-cooled trapped ions and ultracold atoms combined in a single experimental se...
We perform numerical simulations of trapped 171Yb+ ions that are buffer gas cooled by a cold cloud o...
This Dissertation details the development of state-of-the-art hybrid atom-ion trapping architecture ...
We perform numerical simulations of trapped 171Yb+ ions that are buffer gas cooled by a cold cloud o...
Sympathetic laser cooling of ions stored within a linear-geometry, radio frequency, electric-quadrup...
Quantum computing requires ultracold ions in a ground vibrational state, which is achieved by sideba...
In recent years, improved control of the motional and internal quantum states of ultracold neutral a...
Reaching ultracold temperatures within hybrid atom-ion systems is a major limiting factor for contro...
The immersion of a single ion confined by a radiofrequency (RF) trap in an ultracold atomic gas exte...
We present, and derive analytic expressions for, a fundamental limit to the sympathetic cooling of i...
We theoretically study trapped ions that are immersed in an ultracold gas of Rydberg-dressed atoms. ...
Great advances in precision measurements in the quantum regime have been achieved with trapped ions ...
Sympathetic cooling of a Fermi gas with a buffer gas of bosonic atoms is an efficient way to achieve...
This dissertation details of the construction of and experiments performed in a hybrid system consis...
Ultracold cold molecular ions promise new directions in various studies of fundamental physics, such...
Hybrid systems of laser-cooled trapped ions and ultracold atoms combined in a single experimental se...
We perform numerical simulations of trapped 171Yb+ ions that are buffer gas cooled by a cold cloud o...
This Dissertation details the development of state-of-the-art hybrid atom-ion trapping architecture ...
We perform numerical simulations of trapped 171Yb+ ions that are buffer gas cooled by a cold cloud o...
Sympathetic laser cooling of ions stored within a linear-geometry, radio frequency, electric-quadrup...
Quantum computing requires ultracold ions in a ground vibrational state, which is achieved by sideba...
In recent years, improved control of the motional and internal quantum states of ultracold neutral a...