Characterisation and spectroscopy of laser-cooled atoms with an optical nanofibre


Autoria(s): Russell, Laura
Contribuinte(s)

Nic Chormaic, Síle

Science Foundation Ireland

Okinawa Institute of Science and Technology Graduate University, Japan

Irish Research Council for Science Engineering and Technology

Data(s)

10/02/2014

11/02/2015

2013

2013

Resumo

In this thesis, a magneto-optical trap setup is used to laser cool and confine a cloud of 85Rb. The cloud typically contains 108 atoms in a 1 mm3 volume at a temperature in the region of the Doppler Limit (146 _K for 85Rb). To study the cold cloud, a subwavelength optical fibre - a nanofibre, or ONF - is positioned inside the cloud. The ONF can be used in two ways. Firstly, it is an efficient fluorescence collection tool for the cold atoms. Loading times, lifetimes and temperatures can be measured by coupling the atomic fluorescence to the evanescent region of the ONF. Secondly, the ONF is used as a probe beam delivery tool using the evanescent field properties of the device, allowing one to perform spectroscopy on few numbers of near-surface atoms. With improvements in optical density of the cloud, this system is an ideal candidate in which to generate electromagnetically induced transparency and slow light. A theoretical study of the van der Waals and Casimir-Polder interactions between an atom and a dielectric surface is also presented in this work in order to understand their effects in the spectroscopy of near-surface atoms.

Science Foundation Ireland (08/ERA/l1761 through the NanoSci-E+ project NOIs); Science Foundation Ireland (06/W.1/I866 and 07/RFP/PHYF518); Irish Research Council for Science Engineering and Technology (Embark Initiative)

Accepted Version

Not peer reviewed

Formato

application/pdf

Identificador

Russell, L. 2013. Characterisation and spectroscopy of laser-cooled atoms with an optical nanofibre. PhD Thesis, University College Cork.

212

http://hdl.handle.net/10468/1376

Idioma(s)

en

en

Publicador

University College Cork

Direitos

© 2013, Laura Russell

http://creativecommons.org/licenses/by-nc-nd/3.0/

Palavras-Chave #Casimir-Polder #van der Waals #Lasers #Optics #Optical fibre #Surface interactions #Spectroscopy #Rubidium #Magneto-optical trap #Spectrum analysis #Laser cooling
Tipo

Doctoral thesis

Doctoral

PhD (Science)