Sympathetic cooling of a Fermi gas with a buffer gas of bosonic atoms is an efficient way to achieve quantum degeneracy in Fermi systems. However, all attempts to use this method for cooling ions until recently were ineffective because of the unremovable ion `"micromotion" in electromagnetic Paul traps, which prevents the realization of a number of hot projects with cold atom-ion systems. In this regard, we propose a new efficient method for sympathetic cooling of ions: the use for this purpose of cold buffer atoms in the region of atom-ion confinement-induced resonances (CIRs) [V.S. Melezhik, Phys. Rev. A103, 53109 (2021)]. We show that the destructive effect of "micromotion" on its sympathetic cooling can, however, be suppressed in the vi...
This dissertation focuses on observing and controlling cold atom-ion collisions. Such collisions hav...
We model sympathetic cooling of ground-state CaF molecules by ultracold Li and Rb atoms. The molecul...
Ultracold cold molecular ions promise new directions in various studies of fundamental physics, such...
Reaching ultracold temperatures within hybrid atom-ion systems is a major limiting factor for contro...
Sympathetic laser cooling of ions stored within a linear-geometry, radio frequency, electric-quadrup...
Hot electrons confined in a Penning trap at 3 tesla self-cool to near room temperature in a few seco...
We present, and derive analytic expressions for, a fundamental limit to the sympathetic cooling of i...
In this thesis the dynamics of a trapped ion immersed in a spatially localized buffer gas is invest...
This dissertation reports sympathetic cooling of the molecular hydroxyl anion (OH– ) via collisions ...
Great advances in precision measurements in the quantum regime have been achieved with trapped ions ...
This Dissertation details the development of state-of-the-art hybrid atom-ion trapping architecture ...
The study of interactions between simultaneously trapped cold ions and atoms has emerged as a new re...
Hybrid systems of laser-cooled trapped ions and ultracold atoms combined in a single experimental se...
1. Confining charged particles with oscillating electric fields2. Interaction of light with ions tra...
We theoretically study trapped ions that are immersed in an ultracold gas of Rydberg-dressed atoms. ...
This dissertation focuses on observing and controlling cold atom-ion collisions. Such collisions hav...
We model sympathetic cooling of ground-state CaF molecules by ultracold Li and Rb atoms. The molecul...
Ultracold cold molecular ions promise new directions in various studies of fundamental physics, such...
Reaching ultracold temperatures within hybrid atom-ion systems is a major limiting factor for contro...
Sympathetic laser cooling of ions stored within a linear-geometry, radio frequency, electric-quadrup...
Hot electrons confined in a Penning trap at 3 tesla self-cool to near room temperature in a few seco...
We present, and derive analytic expressions for, a fundamental limit to the sympathetic cooling of i...
In this thesis the dynamics of a trapped ion immersed in a spatially localized buffer gas is invest...
This dissertation reports sympathetic cooling of the molecular hydroxyl anion (OH– ) via collisions ...
Great advances in precision measurements in the quantum regime have been achieved with trapped ions ...
This Dissertation details the development of state-of-the-art hybrid atom-ion trapping architecture ...
The study of interactions between simultaneously trapped cold ions and atoms has emerged as a new re...
Hybrid systems of laser-cooled trapped ions and ultracold atoms combined in a single experimental se...
1. Confining charged particles with oscillating electric fields2. Interaction of light with ions tra...
We theoretically study trapped ions that are immersed in an ultracold gas of Rydberg-dressed atoms. ...
This dissertation focuses on observing and controlling cold atom-ion collisions. Such collisions hav...
We model sympathetic cooling of ground-state CaF molecules by ultracold Li and Rb atoms. The molecul...
Ultracold cold molecular ions promise new directions in various studies of fundamental physics, such...