Gauthier Guillaume Guillaume Transport and Turbulence in Quasi-Uniform and Versatile Bose-Einstein Condensates

Transport and Turbulence in Quasi-Uniform and Versatile Bose-Einstein Condensates

von Gauthier Guillaume

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Beschreibung

Advancing the experimental study of superfluids relies on increasingly sophisticated techniques. This work develops and demonstrates the loading of Bose-Einstein condensates (BECs) into nearly arbitrary trapping potentials, with a resolution improved by a factor of seven when compared to reported systems. These advanced control techniques have now been adopted by several cold atoms labs around the world.

 

The book describes how this BEC system was used to study 2D superfluid dynamic. In particular, negative temperature vortex states in a two-dimensional quantum fluid were observed. These states were first predicted by Lars Onsager 70 years ago and have significance to 2D turbulence in quantum and classical fluids, long-range interacting systems, and defect dynamics in high-energy physics. These experiments have established dilute-gas BECs as the prototypical system for the experimental study of point vortices and their nonequilibrium dynamics. 

 

Also presented is a new approach to superfluid circuitry based on classical acoustic circuits, whose conceptual and quantitative superiority over previous lumped-element models is demonstrated. This approach has established foundational principles of superfluid circuitry that will impact the design of future transport experiments and new generation quantum devices, such as atomtronics circuits and superfluid sensors.



Advancing the experimental study of superfluids relies on increasingly sophisticated techniques. We develop and demonstrate the loading of Bose-Einstein condensates (BECs) into nearly arbitrary trapping potentials, with a resolution improved by a factor of seven when compared to reported systems. These advanced control techniques have since been adopted by several cold atoms labs around the world.
How this BEC system was used to study 2D superfluid dynamics is described. In particular, negative temperature vortex states in a two-dimensional quantum fluid were observed. These states were first predicted by Lars Onsager 70 years ago and have significance to 2D turbulence in quantum and classical fluids, long-range interacting systems, and defect dynamics in high-energy physics. These experiments have established dilute-gas BECs as the prototypical system for the experimental study of point vortices and their nonequilibrium dynamics. 
We also developed a new approach to superfluid circuitry based on classical acoustic circuits, demonstrating its conceptual and quantitative superiority over previous lumped-element models. This has established foundational principles of superfluid circuitry that will impact the design of future transport experiments and new generation quantum devices, such as atomtronics circuits and superfluid sensors.

Nominated as an outstanding Ph.D. thesis by The University of Queensland, QLD, Australia Undergraduate level introduction to transport and turbulence in superfluids Guide to implimenting DMDs in your cold atom experiment

Autor*in

Gauthier Guillaume

Themen in »Transport and Turbulence in Quasi-Uniform and Versatile Bose-Einstein Condensates«

Superfluid Transport Turbulence in BEC Negative Temperature Quantum Thermodynamics Digital Micromirror Device (DMD) Onsager Vortices Superfluid Acoustic Model

Stimmen zu »Transport and Turbulence in Quasi-Uniform and Versatile Bose-Einstein Condensates«

Details

ISBN: 9783030549664
Verlag: Springer International Publishing
Erscheinung: 27.09.2020

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