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Comparative study of in situ N2 rotational Raman spectroscopy methods for probing energy thermalisation processes during spin-exchange optical pumping

Newton, Hayley; Walkup, Laura L.; Whiting, Nicholas; West, Linda; Carriere, James; Havermeyer, Frank; Ho, Lawrence; Morris, Peter; Goodson, Boyd M.; Barlow, Michael J.

Authors

Hayley Newton

Laura L. Walkup

Nicholas Whiting

Linda West

James Carriere

Frank Havermeyer

Lawrence Ho

Peter Morris

Boyd M. Goodson

Michael J. Barlow



Abstract

Spin-exchange optical pumping (SEOP) has been widely used to produce enhancements in nuclear spin polarisation for hyperpolarised noble gases. However, some key fundamental physical processes underlying SEOP remain poorly understood, particularly in regards to how pump laser energy absorbed during SEOP is thermalised, distributed and dissipated. This study uses in situ ultra-low frequency Raman spectroscopy to probe rotational temperatures of nitrogen buffer gas during optical pumping under conditions of high resonant laser flux and binary Xe/N2 gas mixtures. We compare two methods of collecting the Raman scattering signal from the SEOP cell: a conventional orthogonal arrangement combining intrinsic spatial filtering with the utilisation of the internal baffles of the Raman spectrometer, eliminating probe laser light and Rayleigh scattering, versus a new in-line modular design that uses ultra-narrowband notch filters to remove such unwanted contributions. We report a ~23-fold improvement in detection sensitivity using the in-line module, which leads to faster data acquisition and more accurate real-time monitoring of energy transport processes during optical pumping. The utility of this approach is demonstrated via measurements of the local internal gas temperature (which can greatly exceed the externally measured temperature) as a function of incident laser power and position within the cell.

Citation

Newton, H., Walkup, L. L., Whiting, N., West, L., Carriere, J., Havermeyer, F., …Barlow, M. J. (2014). Comparative study of in situ N2 rotational Raman spectroscopy methods for probing energy thermalisation processes during spin-exchange optical pumping. Applied Physics B, 115(2), 167-172. https://doi.org/10.1007/s00340-013-5588-x

Journal Article Type Article
Acceptance Date Jul 12, 2013
Online Publication Date Aug 6, 2013
Publication Date 2014-05
Deposit Date Aug 10, 2018
Publicly Available Date Aug 10, 2018
Journal Applied Physics B
Print ISSN 0946-2171
Electronic ISSN 1432-0649
Publisher BioMed Central
Peer Reviewed Peer Reviewed
Volume 115
Issue 2
Pages 167-172
DOI https://doi.org/10.1007/s00340-013-5588-x
Keywords Notch Filter; Raman Line; Raman Spectrometer; Alkali Metal Atom; Nuclear Spin Polarisation
Publisher URL https://link.springer.com/article/10.1007%2Fs00340-013-5588-x

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