We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks method”, for generating and manipulating on-demand several vortices in a highly oblate atomic Bose-Einstein condensate (BEC) in order to initialize complex vortex distributions for studies of vortex dynamics. The method utilizes moving laser beams (the “chopsticks”) to generate, capture and transport vortices inside and outside the BEC. We examine in detail this methodology and show a wide parameter range of applicability for the prototypical two-vortex case, and show case examples of producing and manipulating several vortices for which there is no net circulation, equal numbers of positive and negative circulation vortices, and for which t...
We experimentally and numerically demonstrate deterministic creation and manipulation of a pair of o...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...
We experimentally and numerically demonstrate a method to generate multiply quantized superfluid cir...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We experimentally and numerically demonstrate deterministic creation and manipulation of a pair of o...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...
We experimentally and numerically demonstrate a method to generate multiply quantized superfluid cir...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We experimentally and numerically demonstrate deterministic creation and manipulation of a pair of o...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...
We experimentally and numerically demonstrate a method to generate multiply quantized superfluid cir...