Double-target BEC atomtronic rotation sensor
Abstract
We present a proof-of-concept design for an atomtronic rotation sensor consisting of an array of ``double-target'' Bose-Einstein condensates (BECs). A ``target'' BEC is a disk-shaped condensate surrounded by a concentric ring-shaped condensate. A ``double-target'' BEC is two adjacent target BECs whose ring condensates partially overlap. The sensor consists of an array of these double-target BECs. The measurement of the frame rotation speed, , is carried out by creating the array of double-target BECs (setup step), inducing one unit of quantized flow in the top ring of each member of the array (initialization step), applying potential barriers in the overlap region of each member (measurement step), and observing whether the induced flow is transferred from the top to the bottom ring in each member (readout step). We describe a set of simulations showing that a single instance of a double-target BEC behaves in a way that enables the efficient operation of an array for measuring . As an example of sensor operation we present a simulation showing that a 22 array can be designed to measure in a user-specified range.
Keywords
Cite
@article{arxiv.2411.06585,
title = {Double-target BEC atomtronic rotation sensor},
author = {Oluwatobi Adeniji and Charles Henry and Stephen Thomas and Robert Colson Sapp and Anish Goyal and Charles W. Clark and Mark Edwards},
journal= {arXiv preprint arXiv:2411.06585},
year = {2024}
}
Comments
13 pages, 10 figures